From 421c66b0bfb9ee29f23cf5412845957bded4e49c Mon Sep 17 00:00:00 2001 From: BattINFO Developers Date: Wed, 17 Jan 2024 17:28:43 +0000 Subject: [PATCH] Automatic update of github pages --- sphinx/electrochemistry.rst | 1604 ++++++++++++++++++----------------- sphinx/electrochemistry.ttl | 1581 +++++++++++++++++----------------- 2 files changed, 1635 insertions(+), 1550 deletions(-) diff --git a/sphinx/electrochemistry.rst b/sphinx/electrochemistry.rst index 139598d..cc9afe2 100644 --- a/sphinx/electrochemistry.rst +++ b/sphinx/electrochemistry.rst @@ -2698,23 +2698,6 @@ Elucidation: Electrochemistry Concepts ========================= -.. raw:: html - -
- -ACVoltammetry -------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8ca00b45_5ba6_48a0_aaf6_abd959a7238b - -Elucidation: - voltammetry in which a sinusoidal alternating potential of small amplitude (10 to 50 mV) of constant frequency (10 Hz to 100 kHz) is superimposed on a slowly and linearly varying potential ramp. -Alternative Label(s): - ACV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -2728,19 +2711,6 @@ Elucidation: Sinusoidal potential waveform superimposed to a linear potential ramp. -.. raw:: html - -
- -AbrasiveStrippingVoltammetry ----------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0b1f77b8_2349_4433_b440_43dc84a2210f - -Elucidation: - electrochemical method where traces of solid particles are abrasively transferred onto the surface of an electrode, followed by an electrochemical dissolution (anodic or cathodic dissolution) that is recorded as a current–voltage curve - - .. raw:: html
@@ -2816,23 +2786,6 @@ Elucidation: a degradation mechanism in electrochemical cells in which fractures in the active material particles increase cell resistance. -.. raw:: html - -
- -AdsorptiveStrippingVoltammetry ------------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a05e7945_c942_45cf_812c_c9a595d15888 - -Elucidation: - Stripping voltammetry involving pre-concentration by adsorption of the analyte (in contrast to electro- chemical accumulation). -Alternative Label(s): - AdSV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -2936,21 +2889,6 @@ Alternative Label(s): AqueousAmmoniumChlorideSolution -.. raw:: html - -
- -Amperometry ------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3fe63496_6d87_427a_b2aa_4555bc31ee1a - -Elucidation: - techniques based on measurement of current at a constant controlled potential -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -3019,21 +2957,6 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-02-09 -.. raw:: html - -
- -AnodicStrippingVoltammetry --------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8ba8ec72_abd0_49eb_a06f_83fe5da108f4 - -Elucidation: - Stripping voltammetry in which material accumulated at the working electrode is electrochemically oxi- dized in the stripping step. -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -3346,6 +3269,19 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Capacity_loss +.. raw:: html + +
+ +CarbonBasedElectrode +-------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2c33088_224f_4fdb_857a_7cb62e3dddca + +Elucidation: + an electrode which contains mostly materials based on carbon + + .. raw:: html
@@ -3414,7 +3350,7 @@ Case Elucidation: container for the plate pack or packs and electrolyte of a cell or cells made of a material impervious to the electrolyte Alternative Label(s): - Container, Housing + Can, Container, Housing IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-14 @@ -3511,23 +3447,6 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-02-10 -.. raw:: html - -
- -CathodicStrippingVoltammetry ----------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_61740c42_d332_492c_8b37_90a187c7f6d9 - -Elucidation: - stripping voltammetry in which material accumulated at the working electrode is electrochemically reduced in the stripping step -Alternative Label(s): - CSV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -3715,53 +3634,6 @@ Elucidation: electrode in which the active material is chromium -.. raw:: html - -
- -Chronoamperometry ------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_729a1064_d039_4b74_9d1d_759b18a3971c - -Elucidation: - amperometry in which the current is measured as a function of time after a change in the applied potential -Alternative Label(s): - AmperiometricDetection, AmperometricCurrentTimeCurve -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -Chronocoulometry ----------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f91c9ae3_42b8_4efa_9b67_a406d162d3b5 - -Elucidation: - direct coulometry at controlled potential in which the electric charge passed after the application of a potential step perturbation is measured as a function of time (Q-t curve) -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -Chronopotentiometry -------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b - -Elucidation: - potentiometry in which the potential is measured with time following a change in applied current -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -3794,6 +3666,19 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Coating +.. raw:: html + +
+ +CobaltBasedElectrode +-------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a + +Elucidation: + an electrode which contains mostly materials based on cobalt + + .. raw:: html
@@ -3807,6 +3692,17 @@ Elucidation: electrode in which the active material is cobalt +.. raw:: html + +
+ +Coin +---- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2522cbd8_5382_457f_b9b5_775860f83357 + + + .. raw:: html
@@ -3816,10 +3712,10 @@ CoinCase * https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 +Elucidation: + a round-type case with a height that is less than the diameter Alternative Label(s): ButtonCase -IEC Reference: - a round-type case with a height that is less than the diameter .. raw:: html @@ -3867,38 +3763,6 @@ Elucidation: an electrochemical cell for conductivity measurements -.. raw:: html - -
- -ConductometricTitration ------------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e9639083_e9c5_4d0a_97e8_be1e139c179f - -Elucidation: - titration in which the electric conductivity of a solution is measured as a function of the amount of titrant added -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -Conductometry -------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3a6d552_b38e_47ad_9d48_e8b77035d63e - -Elucidation: - measurement principle in which the electric conductivity of a solution is measured -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Conductometry - - .. raw:: html
@@ -4079,38 +3943,6 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Voltameter -.. raw:: html - -
- -CoulometricTitration --------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_52501237_0c13_4bfb_aa3a_441c6a9ae3a6 - -Elucidation: - titration in which the titrant is generated electrochemically, either by constant current or at constant potential. The titrant reacts stoichiometrically with the analyte, the amount of which is calculated using Faraday’s laws of electrolysis from the electric charge required to reach the end-point - - -.. raw:: html - -
- -Coulometry ----------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 - -Elucidation: - electrochemical measurement principle in which the electric charge required to carry out a known electrochemical reaction is measured. By Faraday’s laws of electrolysis, the amount of substance is proportional to the charge -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-13 -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Coulometry - - .. raw:: html
@@ -4242,38 +4074,6 @@ Elucidation: vector containing at least two values for the quantity cycle number -.. raw:: html - -
- -CyclicChronopotentiometry -------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_225cb9b8_d413_451e_9e36_fb6d1344b16e - -Elucidation: - chronopotentiometry where the change in applied current undergoes a cyclic current reversal - - -.. raw:: html - -
- -CyclicVoltammetry ------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2f96eb3e_4115_4236_9203_525fb27fe92d - -Elucidation: - voltammetry in which the electric current is recorded as the electrode potential is varied with time cycli- cally between two potential limits, normally at a constant scan rate -Alternative Label(s): - CV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Cyclic_voltammetry - - .. raw:: html
@@ -4295,30 +4095,26 @@ Wikipedia Reference: .. raw:: html -
+
-CylindricalCase ---------------- +Cylindrical +----------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_780aeb7b_9eb2_4324_ba2d_1a874136b4e5 -IEC Reference: - a round-type case with a height that is greater than or equal to the diameter .. raw:: html -
+
-DCPolarography --------------- +CylindricalCase +--------------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5a0f3b6a_10b4_43a7_b0b6_4eb5c077980e +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a Elucidation: - linear scan voltammetry with slow scan rate in which a dropping mercury electrode is used as the working electrode -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 + a round-type case with a height that is greater than or equal to the diameter .. raw:: html @@ -4340,34 +4136,6 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Dendrite_(crystal) -.. raw:: html - -
- -Dielectrometry --------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_43ce1a7e_8056_40cb_bdbd_4ce991af1821 - -Elucidation: - electrochemical measurement principle based on the measurement of the dielectric constant of a sample resulting from the orientation of particles (molecules or ions) that have a dipole moment in an electric field -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -DifferentialLinearPulseVoltammetry ----------------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_81b7c95b_8671_4ba7_b4f8_ec19a25096eb - -Elucidation: - Differential Pulse Voltammetry in which small potential pulses are superimposed onto a linearly varying potential. - - .. raw:: html
@@ -4383,127 +4151,67 @@ Elucidation: .. raw:: html -
+
-DifferentialPulseVoltammetry ----------------------------- +DirectCurrent +------------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3e56313_417c_42b7_a934_0018ce2dffc2 +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_40ca9548_910a_48b6_9a26_f94095d349cd Elucidation: - voltammetry in which small potential pulses (constant height 10 to 100 mV, constant width 10 to 100 ms) are superimposed onto a linearly varying potential or onto a staircase potential ramp. The current is sampled just before the onset of the pulse (e.g. 10 to 20 ms) and for the same sampling time just before the end of the pulse. The difference between the two sampled currents is plotted versus the potential applied before the pulse. Thus, a differential pulse voltammogram is peak-shaped + Signal consisting of a constant electric current. Alternative Label(s): - DPV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 + ConstantCurrentSignal, DC +IEC Reference: + https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=131-11-22 Wikipedia Reference: - https://en.wikipedia.org/wiki/Differential_pulse_voltammetry + https://en.wikipedia.org/wiki/Constant_current .. raw:: html -
+
-DifferentialStaircasePulseVoltammetry -------------------------------------- +DirectCurrent +------------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56da3bb3_a0ce_40ed_b152_d3c14329d31a +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_885b462e_f6bc_412d_8b94_9425e13af0c7 Elucidation: - Differential Pulse Voltammetry in which small potential pulses are superimposed onto a staircase potential ramp. + electric current that flows in a constant direction, i.e. a current with a constant sign +Alternative Label(s): + DC +IUPAC Reference: + https://goldbook.iupac.org/terms/view/D01767 +Wikipedia Reference: + https://en.wikipedia.org/wiki/Direct_current .. raw:: html -
+
-DirectCoulometryAtControlledCurrent ------------------------------------ +Discharge +--------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_180878b5_8de8_4dd8_b881_1d0bebe326d4 +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc Elucidation: - coulometry at an imposed, constant current in the electrochemical cell + operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell +Alternative Label(s): + ElectrochemicalDischarging +IEC Reference: + https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-23 .. raw:: html -
+
-DirectCoulometryAtControlledPotential -------------------------------------- +Dissociation +------------ -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_39536efc_22a6_4f39_b0c2_e8b845a36278 - -Elucidation: - coulometry at a preselected constant potential of the working electrode -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -DirectCurrent -------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_40ca9548_910a_48b6_9a26_f94095d349cd - -Elucidation: - Signal consisting of a constant electric current. -Alternative Label(s): - ConstantCurrentSignal, DC -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=131-11-22 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Constant_current - - -.. raw:: html - -
- -DirectCurrent -------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_885b462e_f6bc_412d_8b94_9425e13af0c7 - -Elucidation: - electric current that flows in a constant direction, i.e. a current with a constant sign -Alternative Label(s): - DC -IUPAC Reference: - https://goldbook.iupac.org/terms/view/D01767 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Direct_current - - -.. raw:: html - -
- -Discharge ---------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc - -Elucidation: - operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell -Alternative Label(s): - ElectrochemicalDischarging -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-23 - - -.. raw:: html - -
- -Dissociation ------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3b3868f_6edd_4ce8_a984_08f9cf391f90 +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3b3868f_6edd_4ce8_a984_08f9cf391f90 Elucidation: process where molecules split up into ions due to being dissolved @@ -4724,21 +4432,6 @@ Elucidation: Time dependent variation of an electric quantity. -.. raw:: html - -
- -ElectroanalyticalTechnique --------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 - -Elucidation: - analytical methods in which electrochemical processes or phenomena are the core of the measurement principle involving electrochemical cells providing qualitative and quantitative responses. -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -4891,23 +4584,6 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-03 -.. raw:: html - -
- -ElectrochemicalImpedanceSpectroscopy ------------------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d30d9de0_b9bf_4919_a022_0394df9c3672 - -Elucidation: - electrochemical measurement method of the complex impedance of an electrochemical system as a function of the frequency of a small amplitude (normally 5 to 10 mV) sinusoidal voltage perturbation superimposed on a fixed value of applied potential or on the open circuit potential -Alternative Label(s): - EIS -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -4975,21 +4651,6 @@ Elucidation: A chemical phenomenon that is accompanied by the flow of electric current -.. raw:: html - -
- -ElectrochemicalPiezoelectricMicrogravimetry -------------------------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a7fb32a_743f_4aa6_ac5a_ff7a2ba29dce - -Elucidation: - Electrogravimetry using an electrochemical quartz crystal microbalance. -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -5084,6 +4745,19 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Electrode +.. raw:: html + +
+ +ElectrodeCoating +---------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_403c300e_09b9_400b_943b_04e82a3cfb56 + +Elucidation: + an electrode which is coated onto a substrate, typically a metallic foil current collector. + + .. raw:: html
@@ -5216,23 +4890,6 @@ Elucidation: the electrochemical dissolution of a material to soluble species -.. raw:: html - -
- -Electrogravimetry ------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_14d0358f_f65d_44f9_8b85_40b38f17c4ed - -Elucidation: - method of electroanalytical chemistry used to separate by electrolyse ions of a substance and to derive the amount of this substance from the increase in mass of an electrode. -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-14 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Electrogravimetry - - .. raw:: html
@@ -5485,6 +5142,17 @@ Foil +.. raw:: html + +
+ +FormFactor +---------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 + + + .. raw:: html
@@ -5530,21 +5198,6 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Fuel_cell -.. raw:: html - -
- -GITT ----- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_11895d59_3f97_4bad_badf_1a90f2347c2a - -Elucidation: - electrochemical method that applies current pulses to an electrochemical cell at rest and measures the voltage response -Alternative Label(s): - GalvanostaticIntermittentTitrationTechnique - - .. raw:: html
@@ -5753,40 +5406,6 @@ Elucidation: electrode in which the active material is graphite -.. raw:: html - -
- -GravimetricAnalysis -------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_32ab2ea8_6263_42a8_8682_2fe0343f8bea - -Elucidation: - quantitative determination of a chemical species based on its mass -Alternative Label(s): - GravimetricMethod -IUPAC Reference: - https://goldbook.iupac.org/terms/view/G02694 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Gravimetric_analysis - - -.. raw:: html - -
- -HPPC ----- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_99bdbd45_c3ea_4fb9_ae50_ed1ab6bb1dff - -Elucidation: - electrochemical method that measures the voltage drop of a cell resulting from a square wave current load -Alternative Label(s): - HybridPulsePowerCharacterisation, HybridPulsePowerCharacterization - - .. raw:: html
@@ -5841,23 +5460,6 @@ Elucidation: a flow cell that uses one or more electroactive components deposited as a solid layer -.. raw:: html - -
- -HydrodynamicVoltammetry ------------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d95fdd2e_38bf_4065_a857_78eb201ee166 - -Elucidation: - voltammetry with forced flow of the solution towards the electrode surface -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Hydrodynamic_voltammetry - - .. raw:: html
@@ -5873,36 +5475,6 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-16 -.. raw:: html - -
- -ICI ---- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0838f0b6_ca9a_4f76_9770_ca964617bf1b - -Elucidation: - electrochemical method that measures the voltage response of an electrochemical cell under galvanostatic conditions to short interruptions in the current -Alternative Label(s): - IntermittentCurrentInterruptionMethod - - -.. raw:: html - -
- -Impedimetry ------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_07ad0aff_ab59_442d_9c0a_7f8c5cba8982 - -Elucidation: - measurement principle in which the complex electric impedance of a system is measured, usually as a function of a small amplitude sinusoidal electrode potential -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -6079,6 +5651,19 @@ Alternative Label(s): IrO2Electrode +.. raw:: html + +
+ +IronBasedElectrode +------------------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1 + +Elucidation: + an electrode which contains mostly materials based on iron + + .. raw:: html
@@ -6105,6 +5690,19 @@ Elucidation: electrode in which the active material is iron +.. raw:: html + +
+ +IronPhosphateBasedElectrode +--------------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d54f6aac_7cd2_4d52_9bca_2f19bb1eaec4 + +Elucidation: + an electrode which contains mostly materials based on iron phosphate + + .. raw:: html
@@ -6219,19 +5817,6 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-16 -.. raw:: html - -
- -LinearChronopotentiometry -------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_618538fa_6607_45a3_ad06_6a5f98febcbd - -Elucidation: - chronopotentiometry where the applied current is changed linearly - - .. raw:: html
@@ -6258,25 +5843,6 @@ Elucidation: Signal where the electric potential is varied linearly from an initial potential. -.. raw:: html - -
- -LinearScanVoltammetry ---------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a9f19bb0_55bc_4908_b0e4_7888077b0019 - -Elucidation: - Voltammetry in which the current is recorded as the electrode potential is varied linearly with time. -Alternative Label(s): - LSV, LinearPolarization, LinearSweepVoltammetry -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Linear_sweep_voltammetry - - .. raw:: html
@@ -6621,6 +6187,19 @@ Elucidation: an insertion electrode in which the guest molecule is magnesium +.. raw:: html + +
+ +ManganeseBasedElectrode +----------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 + +Elucidation: + an electrode which contains mostly materials based on manganese + + .. raw:: html
@@ -6638,19 +6217,15 @@ Alternative Label(s): .. raw:: html -
+
-MeasurementPrinciple --------------------- +ManganesePhosphateBasedElectrode +-------------------------------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_468b3b63_b62a_4110_8c7e_40fffd5fdfd6 Elucidation: - phenomenon serving as the basis of a measurement -Alternative Label(s): - PrincipleOfMeasurement -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=112-04-03 + an electrode which contains mostly materials based on manganese phosphate .. raw:: html @@ -6833,6 +6408,19 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-01-11 +.. raw:: html + +
+ +NickelBasedElectrode +-------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 + +Elucidation: + an electrode which contains mostly materials based on nickel + + .. raw:: html
@@ -6936,53 +6524,21 @@ Alternative Label(s): .. raw:: html -
+
-NormalPulseVoltammetry ----------------------- +NyquistPlot +----------- -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3c3972f6_8e1d_454b_a198_48173ba2232b +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b01d05_b472_4cf5_b388_e0914db56324 Elucidation: - voltammetry in which potential pulses of amplitude increasing by a constant increment and with a pulse width of 2 to 200 ms are superimposed on a constant initial potential -Alternative Label(s): - NPV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -NyquistPlot ------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b01d05_b472_4cf5_b388_e0914db56324 - -Elucidation: - plots of the out of phase vs. the in phase component of the impedance for all the frequencies tested in an impedimetry measurement + plots of the out of phase vs. the in phase component of the impedance for all the frequencies tested in an impedimetry measurement Alternative Label(s): ComplexPlanePlot, NyquistDiagram Wikipedia Reference: https://en.wikipedia.org/wiki/Nyquist_stability_criterion#Nyquist_plot -.. raw:: html - -
- -OpenCircuitHold ---------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cb3c0663_5962_4b79_8e72_1e8242af3977 - -Elucidation: - a process in which the electric current is kept constant at 0 (i.e., open-circuit conditions) -Alternative Label(s): - OCVHold - - .. raw:: html
@@ -7039,6 +6595,351 @@ Elucidation: a gas diffusion electrode in which the active material is oxygen (O2) +.. raw:: html + +
+ +P12103310 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_27f95593_47f1_4494_b6bb_ac0733df185d + +Elucidation: + a prismatic case with a nominal length of 12 mm, width of 103 mm, and height of 310 mm +Alternative Label(s): + P12/103/310 + + +.. raw:: html + +
+ +P1212080 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c54fbb75_0528_49c0_97e0_258798a947e4 + +Elucidation: + a prismatic case with a nominal length of 12 mm, width of 120 mm, and height of 80 mm +Alternative Label(s): + P12/120/80 + + +.. raw:: html + +
+ +P1212081 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d1199193_b203_4fcb_971c_ccf6332973ae + +Elucidation: + a prismatic case with a nominal length of 12 mm, width of 120 mm, and height of 81 mm +Alternative Label(s): + HEV2, P12/120/81 + + +.. raw:: html + +
+ +P1212085 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4ca551d2_2969_4c18_96ce_db99831ed0af + +Elucidation: + a prismatic case with a nominal length of 12 mm, width of 120 mm, and height of 85 mm +Alternative Label(s): + P12/120/85 + + +.. raw:: html + +
+ +P1312085 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_93358d9b_8976_42d0_84ae_e5a2400c3ea7 + +Elucidation: + a prismatic case with a nominal length of 13 mm, width of 120 mm, and height of 85 mm +Alternative Label(s): + HEV1, P13/120/85 + + +.. raw:: html + +
+ +P1714891 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56def0d5_fe57_40d7_85e3_97872fa2a3e1 + +Elucidation: + a prismatic case with a nominal length of 17 mm, width of 148 mm, and height of 91 mm +Alternative Label(s): + P17/148/91, PHEV2 + + +.. raw:: html + +
+ +P1865140 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_289da03d_606a_4668_a195_e81627bc80b7 + +Elucidation: + a prismatic case with a nominal length of 18 mm, width of 65 mm, and height of 140 mm +Alternative Label(s): + P18/65/140 + + +.. raw:: html + +
+ +P1868107 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d1bf3cdd_d618_40e3_b055_a952ef632157 + +Elucidation: + a prismatic case with a nominal length of 18 mm, width of 68 mm, and height of 107 mm +Alternative Label(s): + P18/68/107 + + +.. raw:: html + +
+ +P20100141 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bba6b94e_c0d7_40bf_a9d6_413ff458397c + +Elucidation: + a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm +Alternative Label(s): + P20/100/141 + + +.. raw:: html + +
+ +P21148128 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0e366263_fded_4509_bddd_392d839013e4 + +Elucidation: + a prismatic case with a nominal length of 21 mm, width of 148 mm, and height of 128 mm +Alternative Label(s): + P21/148/128 + + +.. raw:: html + +
+ +P2117385 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b714a22_4212_4f4f_b578_140c357b18de + +Elucidation: + a prismatic case with a nominal length of 21 mm, width of 173 mm, and height of 85 mm +Alternative Label(s): + P21/173/85, PHEV1 + + +.. raw:: html + +
+ +P27148129 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_619c2e56_077d_4bb4_9062_65fb75763651 + +Elucidation: + a prismatic case with a nominal length of 27 mm, width of 148 mm, and height of 129 mm +Alternative Label(s): + P27/148/129 + + +.. raw:: html + +
+ +P2714891 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f4a6a682_fd7c_43df_bed2_df70848d6026 + +Elucidation: + a prismatic case with a nominal length of 27 mm, width of 148 mm, and height of 91 mm +Alternative Label(s): + P27/148/91 + + +.. raw:: html + +
+ +P2714898 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_50d9652c_6b68_457c_bd72_f89a8e549bcf + +Elucidation: + a prismatic case with a nominal length of 27 mm, width of 148 mm, and height of 98 mm +Alternative Label(s): + P27/148/98 + + +.. raw:: html + +
+ +P2770102 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5c1b56f_5c82_4e3b_800e_5a280331348b + +Elucidation: + a prismatic case with a nominal length of 27 mm, width of 70 mm, and height of 102 mm +Alternative Label(s): + P27/70/102 + + +.. raw:: html + +
+ +P2770120 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7018bd4e_6ca1_44eb_a558_6585c0bf8547 + +Elucidation: + a prismatic case with a nominal length of 27 mm, width of 70 mm, and height of 120 mm +Alternative Label(s): + P27/70/120 + + +.. raw:: html + +
+ +P2770131 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_afe918c7_0634_40c1_9421_78ea2fe707e3 + +Elucidation: + a prismatic case with a nominal length of 27 mm, width of 70 mm, and height of 131 mm +Alternative Label(s): + P27/70/131 + + +.. raw:: html + +
+ +P29135214 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37504d4d_2aff_4f7f_9f46_a24e258028e8 + +Elucidation: + a prismatic case with a nominal length of 29 mm, width of 135 mm, and height of 214 mm +Alternative Label(s): + P29/135/214 + + +.. raw:: html + +
+ +P32173115 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8112c7ba_e58a_463b_8661_b836bb6d7c86 + +Elucidation: + a prismatic case with a nominal length of 32 mm, width of 173 mm, and height of 115 mm +Alternative Label(s): + BEV1, P32/173/115 + + +.. raw:: html + +
+ +P32173225 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_948234f6_4095_4419_af30_00ab297a7694 + +Elucidation: + a prismatic case with a nominal length of 32 mm, width of 173 mm, and height of 225 +Alternative Label(s): + BEV3, P32/173/225 + + +.. raw:: html + +
+ +P4014895 +-------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_41ab11ec_af9f_401d_b80d_474c1dc86cd6 + +Elucidation: + a prismatic case with a nominal length of 40 mm, width of 148 mm, and height of 95 mm +Alternative Label(s): + P40/148/95 + + +.. raw:: html + +
+ +P45173115 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_36444184_1100_4271_869f_7f2d983aaecb + +Elucidation: + a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm +Alternative Label(s): + BEV2, P45/173/115 + + +.. raw:: html + +
+ +P45173225 +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2c63d7f4_09ba_4ca9_baa2_a1da899bf477 + +Elucidation: + a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 225 mm +Alternative Label(s): + BEV4, P45/173/225 + + .. raw:: html
@@ -7243,19 +7144,6 @@ Elucidation: porous electrodes consist of porous matrices of a single reactive electronic conductor or a mixture of solids that include essentially non-conducting, reactive materials in addition to electronic conductors. An electrolytic solution fills the void spaces of the porous matrix. -.. raw:: html - -
- -PorousElectrodeCoating ----------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_403c300e_09b9_400b_943b_04e82a3cfb56 - -Elucidation: - a porous electrode which is coated onto a non-porous substrate, typically a metallic foil current collector. - - .. raw:: html
@@ -7383,40 +7271,6 @@ Alternative Label(s): PSA -.. raw:: html - -
- -PotentiometricStrippingAnalysis -------------------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b5039bc8_f595_4797_908a_7e86131fbde4 - -Elucidation: - two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential. The time between changes in potential in step 2 is related to the concentration of analyte in the solution -Alternative Label(s): - PSA -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - -.. raw:: html - -
- -Potentiometry -------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e8cedede_5685_4625_9abe_64f62b5ddcb6 - -Elucidation: - techniques based on the measurement of potential at controlled current (constant or equal to zero) -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-12 -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -7445,6 +7299,17 @@ Elucidation: a process in which the voltage is kept constant +.. raw:: html + +
+ +Pouch +----- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_af751d07_f0b7_43c7_911d_cba864189b2b + + + .. raw:: html
@@ -7484,6 +7349,17 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-41 +.. raw:: html + +
+ +Prismatic +--------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6775b232_c58a_4303_8164_137261329db6 + + + .. raw:: html
@@ -7688,35 +7564,65 @@ R1511 * https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ce4352a7_f0b1_4f27_9184_6deebf8bbe96 Elucidation: - a coin case with a nominal diameter of 15.8 mm and a height of 11.1 mm -Alternative Label(s): - R52 + a coin case with a nominal diameter of 15.8 mm and a height of 11.1 mm +Alternative Label(s): + R52 + + +.. raw:: html + +
+ +R1616 +----- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d5f67a0c_ed56_479d_9b68_6003142f98b0 + +Elucidation: + a coin case with a nominal diameter of 16.0 mm and a height of 1.6 mm + + +.. raw:: html + +
+ +R1632 +----- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2cf71c1_f2d7_4131_82e0_2701cdecea55 + +Elucidation: + a coin case with a nominal diameter of 16.0 mm and a height of 3.2 mm .. raw:: html -
+
-R1616 ------ +R18650 +------ -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d5f67a0c_ed56_479d_9b68_6003142f98b0 +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3d2f9945_2319_4a08_899b_6a5ffabd4925 Elucidation: - a coin case with a nominal diameter of 16.0 mm and a height of 1.6 mm + a cylindrical case with a nominal diameter of 18 mm and height of 65 mm +Alternative Label(s): + R18/65, R1865 .. raw:: html -
+
-R1632 ------ +R19660 +------ -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2cf71c1_f2d7_4131_82e0_2701cdecea55 +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9dc236d9_c962_4fcc_94db_911a25241472 Elucidation: - a coin case with a nominal diameter of 16.0 mm and a height of 3.2 mm + a cylindrical case with a nominal diameter of 19 mm and height of 66 mm +Alternative Label(s): + R19/66 .. raw:: html @@ -7810,6 +7716,21 @@ Elucidation: a coin case with a nominal diameter of 20.0 mm and a height of 5.0 mm +.. raw:: html + +
+ +R21700 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b048a62_8591_4bf1_8fac_3d647beb9323 + +Elucidation: + a cylindrical case with a nominal diameter of 21 mm and height of 70 mm +Alternative Label(s): + R21/70, R2170 + + .. raw:: html
@@ -7929,6 +7850,51 @@ Elucidation: a coin case with a nominal diameter of 24.5 mm and a height of 7.7 mm +.. raw:: html + +
+ +R26650 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_95d841eb_2002_4411_9f8e_927d6c60e4b3 + +Elucidation: + a cylindrical case with a nominal diameter of 26 mm and height of 65 mm +Alternative Label(s): + R26/65 + + +.. raw:: html + +
+ +R26700 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2251de5_0a7d_4887_8bd1_c906db84abee + +Elucidation: + a cylindrical case with a nominal diameter of 26 mm and height of 70 mm +Alternative Label(s): + R26/70 + + +.. raw:: html + +
+ +R27660 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6ee40e33_ccbf_410e_a8fa_047a9eae0362 + +Elucidation: + a cylindrical case with a nominal diameter of 27 mm and height of 66 mm +Alternative Label(s): + R27/66 + + .. raw:: html
@@ -7942,6 +7908,96 @@ Elucidation: a coin case with a nominal diameter of 30.0 mm and a height of 3.2 mm +.. raw:: html + +
+ +R32134 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c066bf32_ed62_4a11_bf4f_25fe6e8e68b5 + +Elucidation: + a cylindrical case with a nominal diameter of 32 mm and height of 134 mm +Alternative Label(s): + R32/134 + + +.. raw:: html + +
+ +R32700 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 + +Elucidation: + a cylindrical case with a nominal diameter of 32 mm and height of 70 mm +Alternative Label(s): + R32/70 + + +.. raw:: html + +
+ +R38136 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f58476a9_f008_4502_ac94_2f1ebbce1fe3 + +Elucidation: + a cylindrical case with a nominal diameter of 38 mm and height of 136 mm +Alternative Label(s): + R38/136 + + +.. raw:: html + +
+ +R38138 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_169fb6e4_cbed_4b00_ace0_8731123a35b4 + +Elucidation: + a cylindrical case with a nominal diameter of 38 mm and height of 138 mm +Alternative Label(s): + R38/138 + + +.. raw:: html + +
+ +R40108 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56177336_3ae5_48cb_93ca_a8c73216ea73 + +Elucidation: + a cylindrical case with a nominal diameter of 40 mm and height of 108 mm +Alternative Label(s): + R40/108 + + +.. raw:: html + +
+ +R40920 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6eaa3c0d_e1f3_4c6e_91a6_9b8c5a21b8cb + +Elucidation: + a cylindrical case with a nominal diameter of 40 mm and height of 92 mm +Alternative Label(s): + R40/92 + + .. raw:: html
@@ -7955,6 +8011,21 @@ Elucidation: a coin case with a nominal diameter of 4.8 mm and a height of 1.6 mm +.. raw:: html + +
+ +R46800 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1afa2c7e_6ddd_4a9b_9623_40975131a304 + +Elucidation: + a cylindrical case with a nominal diameter of 46 mm and height of 80 mm +Alternative Label(s): + R46/80, R4680 + + .. raw:: html
@@ -8013,6 +8084,36 @@ Alternative Label(s): R64 +.. raw:: html + +
+ +R54137 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_69e59b3d_b19d_4f8e_8b9c_84eb64307626 + +Elucidation: + a cylindrical case with a nominal diameter of 54 mm and height of 137 mm +Alternative Label(s): + R54/137 + + +.. raw:: html + +
+ +R54215 +------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232 + +Elucidation: + a cylindrical case with a nominal diameter of 54 mm and height of 215 mm +Alternative Label(s): + R54/215 + + .. raw:: html
@@ -8445,23 +8546,6 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Salt_bridge -.. raw:: html - -
- -SampledDCPolarography ---------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6f0dc7c0_ba12_4390_9564_f10f85a1779a - -Elucidation: - DC polarography with current sampling at the end of each drop life mechanically enforced by a knocker at a preset drop time value. The current sampling and mechanical drop dislodge are synchronized. -Alternative Label(s): - TASTPolarography -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -9043,25 +9127,6 @@ Elucidation: Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum. -.. raw:: html - -
- -SquareWaveVoltammetry ---------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_042d2282_bd2d_4874_b896_2d9dd06b54dd - -Elucidation: - voltammetry in which a square-wave potential waveform is superimposed on an underlying linearly varying potential ramp or staircase ramp -Alternative Label(s): - OSWV, OsteryoungSquareWaveVoltammetry, SWV -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Squarewave_voltammetry - - .. raw:: html
@@ -9120,19 +9185,6 @@ Wikipedia Reference: https://en.wikipedia.org/wiki/Standard_hydrogen_electrode -.. raw:: html - -
- -StepChronopotentiometry ------------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7416a831_ba72_447c_bf83_3989ba2dfe37 - -Elucidation: - chronopotentiometry where the applied current is changed in steps - - .. raw:: html
@@ -9191,23 +9243,6 @@ StrippingChronopotentiometry -.. raw:: html - -
- -StrippingVoltammetry --------------------- - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b35e843_3132_41e3_b6df_541cd45ba880 - -Elucidation: - two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the amount of an accumulated species is measured by voltammetry. The measured electric current in step 2 is related to the concentration of analyte in the solution by calibration. -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Electrochemical_stripping_analysis - - .. raw:: html
@@ -9466,6 +9501,19 @@ TinElectrode +.. raw:: html + +
+ +TitaniumBasedElectrode +---------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 + +Elucidation: + an electrode which contains mostly materials based on titanium + + .. raw:: html
@@ -9606,6 +9654,19 @@ IEC Reference: https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-12 +.. raw:: html + +
+ +VanadiumBasedElectrode +---------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0ee59786_b090_444d_a46d_505797d07ca4 + +Elucidation: + an electrode which contains mostly materials based on vanadium + + .. raw:: html
@@ -9688,40 +9749,6 @@ Elucidation: vector containing at least two values for the quantity voltage -.. raw:: html - -
- -Voltammetry ------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 - -Elucidation: - techniques based on the measurement of current as a function of controlled time-dependent applied potential -IEC Reference: - https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-11 -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 -Wikipedia Reference: - https://en.wikipedia.org/wiki/Voltammetry - - -.. raw:: html - -
- -VoltammetryAtARotatingDiskElectrode ------------------------------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_183a2337_c35f_4b74_8d9a_08c74d89bedc - -Elucidation: - hydrodynamic voltammetry using a a rotating disc electrode, where the limiting current is described by the Levich equation -IUPAC Reference: - https://doi.org/10.1515/pac-2018-0109 - - .. raw:: html
@@ -9884,6 +9911,28 @@ hasCatholyte +.. raw:: html + +
+ +hasCoating +---------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4df9926d_d4f2_4955_93f3_a03c5edc5383 + + + +.. raw:: html + +
+ +hasCurrentCollector +------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc8c2c5d_cf3d_444d_a7e8_44ec4c06a88e + + + .. raw:: html
@@ -9906,6 +9955,17 @@ hasElectrolyte +.. raw:: html + +
+ +hasFormFactor +------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f + + + .. raw:: html
diff --git a/sphinx/electrochemistry.ttl b/sphinx/electrochemistry.ttl index 5859eaf..a3b92cd 100644 --- a/sphinx/electrochemistry.ttl +++ b/sphinx/electrochemistry.ttl @@ -12,9 +12,10 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; - owl:imports , - ; + owl:versionIRI ; + owl:imports , + , + ; dcterms:abstract "The Electrochemistry Domain Ontology, a specialized domain within the Elementary Multiperspective Materials Ontology (EMMO), encompasses essential terms and relationships for electrochemical systems, materials, methods, and data. Its primary objective is to enable the creation of linked and FAIR (Findable, Accessible, Interoperable, and Reusable) data, thereby fostering advancements in research and innovation within the realm of electrochemistry. This ontology serves as a foundational resource for harmonizing electrochemical knowledge representation, enhancing data interoperability, and accelerating progress in electrochemical research and development."@en ; dcterms:contributor "Casper Welzel Andersen" , "Francesca Lonstad Bleken" , @@ -30,7 +31,7 @@ email: simon.clark@sintef.no Jesper Friis SINTEF Industry email: jesper.friis@sintef.no"""@en ; - owl:versionInfo "0.7.0-alpha" . + owl:versionInfo "0.8.0-alpha" . ################################################################# # Object Properties @@ -59,6 +60,13 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "hasCase"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4df9926d_d4f2_4955_93f3_a03c5edc5383 +:electrochemistry_4df9926d_d4f2_4955_93f3_a03c5edc5383 rdf:type owl:ObjectProperty ; + rdfs:subPropertyOf emmo:EMMO_dba27ca1_33c9_4443_a912_1519ce4c39ec ; + rdfs:range :electrochemistry_09a7f560_9ddf_4c32_b067_b213eca5b0a1 ; + skos:prefLabel "hasCoating"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_578c41e9_ee01_4840_9c8c_04ab6e4e6241 :electrochemistry_578c41e9_ee01_4840_9c8c_04ab6e4e6241 rdf:type owl:ObjectProperty ; rdfs:subPropertyOf emmo:EMMO_dba27ca1_33c9_4443_a912_1519ce4c39ec ; @@ -105,10 +113,299 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "hasCatholyte"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f +:electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f rdf:type owl:ObjectProperty ; + rdfs:subPropertyOf emmo:EMMO_c58c799e_cc6c_4310_a3f1_78da70705b2a ; + rdfs:range :electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 ; + skos:prefLabel "hasFormFactor"@en . + + +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc8c2c5d_cf3d_444d_a7e8_44ec4c06a88e +:electrochemistry_cc8c2c5d_cf3d_444d_a7e8_44ec4c06a88e rdf:type owl:ObjectProperty ; + rdfs:subPropertyOf emmo:EMMO_dba27ca1_33c9_4443_a912_1519ce4c39ec ; + rdfs:range :electrochemistry_212af058_3bbb_419f_a9c6_90ba9ebb3706 ; + skos:prefLabel "hasCurrentCollector"@en . + + ################################################################# # Classes ################################################################# +### http://emmo.info/emmo/domain/chameo/chameo#ACVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom emmo:EMMO_852b4ab8_fc29_4749_a8c7_b92d4fca7d5a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_f591a444_89d6_4093_836d_7d53895edce4 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#AbrasiveStrippingVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#Chronoamperometry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#Chronocoulometry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_85e39686_9658_4c74_bb91_a935704c174a + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#CyclicChronopotentiometry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_6769536b_5320_4b48_a2d8_ac285ec635a8 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#CyclicVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#DCPolarography + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#DifferentialLinearPulseVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#DifferentialPulseVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_b49e2355_392f_4e83_b630_7ff4581d767b + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#DifferentialStaircasePulseVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_85e39686_9658_4c74_bb91_a935704c174a + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#DirectCoulometryAtControlledCurrent + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_885b462e_f6bc_412d_8b94_9425e13af0c7 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#DirectCoulometryAtControlledPotential + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_885b462e_f6bc_412d_8b94_9425e13af0c7 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#Electrogravimetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_898971cb_a9fc_4955_8abf_5d7163a9fe6c + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#HydrodynamicVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#LinearChronopotentiometry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_f046d602_22ea_4f9b_9101_319f510d39f0 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#LinearScanVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#NormalPulseVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#SquareWaveVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#StepChronopotentiometry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_6769536b_5320_4b48_a2d8_ac285ec635a8 + ] , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; + owl:someValuesFrom :electrochemistry_85e39686_9658_4c74_bb91_a935704c174a + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#StrippingVoltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 + ] . + + +### http://emmo.info/emmo/domain/chameo/chameo#Voltammetry + rdfs:subClassOf [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_c4bace1d_4db0_4cd3_87e9_18122bae2840 ; + owl:someValuesFrom :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef + ] . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec :electrochemistry_01260656_ac32_472e_9513_a607366538ec rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_19abaccd_43be_4048_965c_e4fb63c5951b , @@ -166,38 +463,6 @@ email: jesper.friis@sintef.no"""@en ; ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_042d2282_bd2d_4874_b896_2d9dd06b54dd -:electrochemistry_042d2282_bd2d_4874_b896_2d9dd06b54dd rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q4016323" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry in which a square-wave potential waveform is superimposed on an underlying linearly varying potential ramp or staircase ramp"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Squarewave_voltammetry"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Most instruments show plots of the current at the end of the forward-going pulse and of the backward-going pulse vs. the potential, as well as their difference. This can give valuable information on the kinetics of the electrode reaction and the electrode process."@en , - "The current is sampled just before the end of the forward- going pulse and of the backward-going pulse and the difference of the two sampled currents is plotted versus the applied potential of the potential or staircase ramp. The square-wave voltammogram is peak-shaped"@en , - "The sensitivity of SWV depends on the reversibility of the electrode reaction of the analyte."@en ; - skos:altLabel "OSWV"@en , - "OsteryoungSquareWaveVoltammetry"@en , - "SWV"@en ; - skos:prefLabel "SquareWaveVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0471ec77_91bc_4a78_be31_b6af613e5966 :electrochemistry_0471ec77_91bc_4a78_be31_b6af613e5966 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_314d0bd5_67ed_437e_a609_36d46147cea7 ; @@ -333,23 +598,6 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "R726"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_07ad0aff_ab59_442d_9c0a_7f8c5cba8982 -:electrochemistry_07ad0aff_ab59_442d_9c0a_7f8c5cba8982 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "measurement principle in which the complex electric impedance of a system is measured, usually as a function of a small amplitude sinusoidal electrode potential"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - skos:prefLabel "Impedimetry"@en . - - -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0838f0b6_ca9a_4f76_9770_ca964617bf1b -:electrochemistry_0838f0b6_ca9a_4f76_9770_ca964617bf1b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical method that measures the voltage response of an electrochemical cell under galvanostatic conditions to short interruptions in the current"@en ; - skos:altLabel "IntermittentCurrentInterruptionMethod"@en ; - skos:prefLabel "ICI"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_098690e3_9010_437e_8042_cee1656efa9b :electrochemistry_098690e3_9010_437e_8042_cee1656efa9b rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_4839708a_3864_47eb_b719_373ff8874c61 , @@ -451,24 +699,6 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "PotassiumElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0b1f77b8_2349_4433_b440_43dc84a2210f -:electrochemistry_0b1f77b8_2349_4433_b440_43dc84a2210f rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical method where traces of solid particles are abrasively transferred onto the surface of an electrode, followed by an electrochemical dissolution (anodic or cathodic dissolution) that is recorded as a current–voltage curve"@en ; - skos:prefLabel "AbrasiveStrippingVoltammetry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_0b1f77b8_2349_4433_b440_43dc84a2210f ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "electrochemical method where traces of solid particles are abrasively transferred onto the surface of an electrode, followed by an electrochemical dissolution (anodic or cathodic dissolution) that is recorded as a current–voltage curve"@en ; - dcterms:source "Scholz F, Nitschke L, Henrion G (1989) Naturwiss 76:71;" - ] . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 rdf:type owl:Class . @@ -497,6 +727,15 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "ConstantCurrentConstantVoltageCharge"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 +:electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on nickel"@en ; + rdfs:comment "often represented in cell designations by the letter N"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "NickelBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d3e8340_4229_4fd3_b6dd_763bd566551d :electrochemistry_0d3e8340_4229_4fd3_b6dd_763bd566551d rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 ; @@ -528,6 +767,23 @@ email: jesper.friis@sintef.no"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0e366263_fded_4509_bddd_392d839013e4 +:electrochemistry_0e366263_fded_4509_bddd_392d839013e4 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 21 mm, width of 148 mm, and height of 128 mm"@en ; + skos:altLabel "P21/148/128" ; + skos:prefLabel "P21148128" . + + +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0ee59786_b090_444d_a46d_505797d07ca4 +:electrochemistry_0ee59786_b090_444d_a46d_505797d07ca4 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on vanadium"@en ; + rdfs:comment "often represented in cell designations by the letter V"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "VanadiumBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82 , @@ -587,21 +843,10 @@ email: jesper.friis@sintef.no"""@en ; ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 -:electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_f49b84d4_e1f9_424c_bb22_8cea23c0a7d4 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_0acd0fc2_1048_4604_8e90_bf4e84bd87df - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "analytical methods in which electrochemical processes or phenomena are the core of the measurement principle involving electrochemical cells providing qualitative and quantitative responses."@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"^^xsd:anyURI ; - skos:prefLabel "ElectroanalyticalTechnique"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_103c9e6c_9c26_430a_9fb9_f4f041e970b0 :electrochemistry_103c9e6c_9c26_430a_9fb9_f4f041e970b0 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is sodium metatitanate"@en ; skos:prefLabel "SodiumMetatitanateElectrode"@en . @@ -656,15 +901,6 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "R2330"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_11895d59_3f97_4bad_badf_1a90f2347c2a -:electrochemistry_11895d59_3f97_4bad_badf_1a90f2347c2a rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120906986" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical method that applies current pulses to an electrochemical cell at rest and measures the voltage response"@en ; - skos:altLabel "GalvanostaticIntermittentTitrationTechnique"@en ; - skos:prefLabel "GITT"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_11a774f3_d20a_4741_bd81_cae53230bd0c :electrochemistry_11a774f3_d20a_4741_bd81_cae53230bd0c rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_757eae08_4d43_42d4_8b4e_8a0bfd2f9a1c ; @@ -711,28 +947,6 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "RectangularElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_14d0358f_f65d_44f9_8b85_40b38f17c4ed -:electrochemistry_14d0358f_f65d_44f9_8b85_40b38f17c4ed rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_32ab2ea8_6263_42a8_8682_2fe0343f8bea , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_898971cb_a9fc_4955_8abf_5d7163a9fe6c - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q902953" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "method of electroanalytical chemistry used to separate by electrolyse ions of a substance and to derive the amount of this substance from the increase in mass of an electrode."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Electrogravimetry"@en ; - skos:prefLabel "Electrogravimetry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_14d0358f_f65d_44f9_8b85_40b38f17c4ed ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "method of electroanalytical chemistry used to separate by electrolyse ions of a substance and to derive the amount of this substance from the increase in mass of an electrode."@en ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82 ; @@ -751,6 +965,12 @@ email: jesper.friis@sintef.no"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 +:electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 rdf:type owl:Class ; + rdfs:subClassOf emmo:EMMO_64c72d00_7582_44ea_a0b5_3a14e50acc36 ; + skos:prefLabel "FormFactor"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_158ae038_c64b_4cc0_aa56_650475490705 :electrochemistry_158ae038_c64b_4cc0_aa56_650475490705 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_463bcfda_867b_41d9_a967_211d4d437cfb , @@ -793,25 +1013,12 @@ email: jesper.friis@sintef.no"""@en ; skos:prefLabel "R621"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_180878b5_8de8_4dd8_b881_1d0bebe326d4 -:electrochemistry_180878b5_8de8_4dd8_b881_1d0bebe326d4 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_885b462e_f6bc_412d_8b94_9425e13af0c7 - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "coulometry at an imposed, constant current in the electrochemical cell"@en ; - rdfs:comment "Direct coulometry at controlled current is usually carried out in convective mass transfer mode. The end-point of the electrolysis, at which the current is stopped, must be determined either from the inflection point in the E–t curve or by using visual or objective end-point indi- cation, similar to volumetric methods. The total electric charge is calculated as the product of the constant current and time of electrolysis or can be measured directly using a coulometer."@en , - "The advantage of this method is that the electric charge consumed during the electrode reaction is directly proportional to the electrolysis time. Care must be taken to avoid the potential region where another electrode reaction may occur."@en ; - skos:prefLabel "DirectCoulometryAtControlledCurrent"@en . - - -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_183a2337_c35f_4b74_8d9a_08c74d89bedc -:electrochemistry_183a2337_c35f_4b74_8d9a_08c74d89bedc rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_d95fdd2e_38bf_4065_a857_78eb201ee166 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "hydrodynamic voltammetry using a a rotating disc electrode, where the limiting current is described by the Levich equation"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - skos:prefLabel "VoltammetryAtARotatingDiskElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_169fb6e4_cbed_4b00_ace0_8731123a35b4 +:electrochemistry_169fb6e4_cbed_4b00_ace0_8731123a35b4 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 38 mm and height of 138 mm"@en ; + skos:altLabel "R38/138" ; + skos:prefLabel "R38138"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_187326b9_1089_4122_8e7e_1a0bcba210a1 @@ -852,15 +1059,6 @@ email: jesper.friis@sintef.no"""@en ; ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a7fb32a_743f_4aa6_ac5a_ff7a2ba29dce -:electrochemistry_1a7fb32a_743f_4aa6_ac5a_ff7a2ba29dce rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_14d0358f_f65d_44f9_8b85_40b38f17c4ed ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Electrogravimetry using an electrochemical quartz crystal microbalance."@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "The change of mass is, for rigid deposits, linearly proportional to the change of the reso- nance frequency of the quartz crystal, according to the Sauerbrey equation. For non- rigid deposits, corrections must be made."@en ; - skos:prefLabel "ElectrochemicalPiezoelectricMicrogravimetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1aec4cc0_82d5_4042_a657_ed7fe291c3d8 :electrochemistry_1aec4cc0_82d5_4042_a657_ed7fe291c3d8 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82 , @@ -875,7 +1073,8 @@ email: jesper.friis@sintef.no"""@en ; owl:disjointWith :electrochemistry_4a5660bd_1c1a_40e5_8a41_463c720d3903 ; emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-14" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "container for the plate pack or packs and electrolyte of a cell or cells made of a material impervious to the electrolyte"@en ; - skos:altLabel "Container"@en , + skos:altLabel "Can"@en , + "Container"@en , "Housing"@en ; skos:prefLabel "Case"@en . @@ -887,6 +1086,15 @@ email: jesper.friis@sintef.no"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1afa2c7e_6ddd_4a9b_9623_40975131a304 +:electrochemistry_1afa2c7e_6ddd_4a9b_9623_40975131a304 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 46 mm and height of 80 mm"@en ; + skos:altLabel "R46/80" , + "R4680" ; + skos:prefLabel "R46800" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1c0c8f43_7349_4646_94e3_c36727c5c2e3 :electrochemistry_1c0c8f43_7349_4646_94e3_c36727c5c2e3 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_dc205ac2_314e_415c_a2b6_b12e8359d54c ; @@ -903,7 +1111,8 @@ email: jesper.friis@sintef.no"""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1d0f15cb_d6b5_4c27_89ca_fe78adc1ce5b :electrochemistry_1d0f15cb_d6b5_4c27_89ca_fe78adc1ce5b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_d54f6aac_7cd2_4d52_9bca_2f19bb1eaec4 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 @@ -1013,36 +1222,6 @@ Aluminum foil"""@en ; skos:prefLabel "R1136"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_225cb9b8_d413_451e_9e36_fb6d1344b16e -:electrochemistry_225cb9b8_d413_451e_9e36_fb6d1344b16e rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_6769536b_5320_4b48_a2d8_ac285ec635a8 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "chronopotentiometry where the change in applied current undergoes a cyclic current reversal"@en ; - skos:prefLabel "CyclicChronopotentiometry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_225cb9b8_d413_451e_9e36_fb6d1344b16e ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "chronopotentiometry where the change in applied current undergoes a cyclic current reversal"@en ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109." - ] . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_494b372c_cfdf_47d3_a4de_5e037c540de8 ; @@ -1074,6 +1253,12 @@ Aluminum foil"""@en ; skos:prefLabel "ZincInsertionElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2522cbd8_5382_457f_b9b5_775860f83357 +:electrochemistry_2522cbd8_5382_457f_b9b5_775860f83357 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 ; + skos:prefLabel "Coin"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_25d01d13_3ca5_4619_98c1_8ebbd01ad794 :electrochemistry_25d01d13_3ca5_4619_98c1_8ebbd01ad794 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_22522299_4091_4d1f_82a2_3890492df6db ; @@ -1121,24 +1306,6 @@ Aluminum foil"""@en ; skos:prefLabel "CopperElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 -:electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_46957d35_0f8b_4d92_acb3_aded6ce774a1 , - :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_c4bace1d_4db0_4cd3_87e9_18122bae2840 ; - owl:someValuesFrom :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q904093" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-11" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "techniques based on the measurement of current as a function of controlled time-dependent applied potential"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Voltammetry" ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "The current vs. potential (I-E) curve is called a voltammogram."@en ; - skos:prefLabel "Voltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_27662d03_1bcf_4393_a239_32e31b760839 :electrochemistry_27662d03_1bcf_4393_a239_32e31b760839 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_52bbaaee_1145_4be3_8a5c_b366851ea1b9 ; @@ -1188,6 +1355,14 @@ Aluminum foil"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_27f95593_47f1_4494_b6bb_ac0733df185d +:electrochemistry_27f95593_47f1_4494_b6bb_ac0733df185d rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 12 mm, width of 103 mm, and height of 310 mm"@en ; + skos:altLabel "P12/103/310" ; + skos:prefLabel "P12103310" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_28213033_4c74_441c_81c4_a0cad05f9eb6 :electrochemistry_28213033_4c74_441c_81c4_a0cad05f9eb6 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_2e6933aa_4522_4f16_a437_37110e6cbd0d ; @@ -1204,6 +1379,14 @@ Aluminum foil"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_289da03d_606a_4668_a195_e81627bc80b7 +:electrochemistry_289da03d_606a_4668_a195_e81627bc80b7 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 18 mm, width of 65 mm, and height of 140 mm"@en ; + skos:altLabel "P18/65/140" ; + skos:prefLabel "P1865140" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_296b95b0_c4cb_45db_a8ca_f638379870c4 :electrochemistry_296b95b0_c4cb_45db_a8ca_f638379870c4 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -1267,6 +1450,15 @@ Aluminum foil"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2c63d7f4_09ba_4ca9_baa2_a1da899bf477 +:electrochemistry_2c63d7f4_09ba_4ca9_baa2_a1da899bf477 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 225 mm"@en ; + skos:altLabel "BEV4" , + "P45/173/225" ; + skos:prefLabel "P45173225" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_5adb91e0_ffe1_41f3_b779_c6966f65fb0e , @@ -1350,38 +1542,6 @@ Aluminum foil"""@en ; ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2f96eb3e_4115_4236_9203_525fb27fe92d -:electrochemistry_2f96eb3e_4115_4236_9203_525fb27fe92d rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1147647" ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Cyclic_voltammetry"^^xsd:anyURI ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry in which the electric current is recorded as the electrode potential is varied with time cycli- cally between two potential limits, normally at a constant scan rate"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Cyclic_voltammetry"^^xsd:anyURI ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Cyclic voltammetry is frequently used for the investigation of mechanisms of electrochemi- cal/electrode reactions. The current-potential curve may be modelled to obtain reaction mechanisms and electrochemical parameters."@en , - "Normally the initial potential is chosen where no electrode reaction occurs and the switch- ing potential is greater (more positive for an oxidation or more negative for a reduction) than the peak potential of the analyte reaction."@en , - "The initial potential is usually the negative or positive limit of the cycle but can have any value between the two limits, as can the initial scan direction. The limits of the potential are known as the switching potentials."@en , - "The plot of current against potential is termed a cyclic voltammogram. Usually peak-shaped responses are obtained for scans in both directions."@en ; - skos:altLabel "CV"@en ; - skos:prefLabel "CyclicVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2fd5964b_0c65_4413_8b8c_849639e6d1e7 :electrochemistry_2fd5964b_0c65_4413_8b8c_849639e6d1e7 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_5186239a_2af7_4dbf_92ca_22e8e583c528 , @@ -1463,17 +1623,6 @@ Aluminum foil"""@en ; ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_32ab2ea8_6263_42a8_8682_2fe0343f8bea -:electrochemistry_32ab2ea8_6263_42a8_8682_2fe0343f8bea rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q192414" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quantitative determination of a chemical species based on its mass"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Gravimetric_analysis" ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/G02694"@en ; - skos:altLabel "GravimetricMethod"@en ; - skos:prefLabel "GravimetricAnalysis"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_331e6cca_f260_4bf8_af55_35304fe1bbe0 :electrochemistry_331e6cca_f260_4bf8_af55_35304fe1bbe0 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82 ; @@ -1515,7 +1664,8 @@ Aluminum foil"""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_344ed3a6_481a_499f_afef_631f1cece9ef :electrochemistry_344ed3a6_481a_499f_afef_631f1cece9ef rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e @@ -1595,6 +1745,15 @@ Aluminum foil"""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_36444184_1100_4271_869f_7f2d983aaecb +:electrochemistry_36444184_1100_4271_869f_7f2d983aaecb rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; + skos:altLabel "BEV2" , + "P45/173/115" ; + skos:prefLabel "P45173115" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801 :electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 , @@ -1620,6 +1779,14 @@ Aluminum foil"""@en ; skos:prefLabel "R1216"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37504d4d_2aff_4f7f_9f46_a24e258028e8 +:electrochemistry_37504d4d_2aff_4f7f_9f46_a24e258028e8 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 29 mm, width of 135 mm, and height of 214 mm"@en ; + skos:altLabel "P29/135/214" ; + skos:prefLabel "P29135214" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_38755e67_9d3b_4a82_bd8d_ef40a70379c1 :electrochemistry_38755e67_9d3b_4a82_bd8d_ef40a70379c1 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_f76884f7_964e_488e_9bb7_1b2453e9e817 ; @@ -1636,29 +1803,14 @@ Aluminum foil"""@en ; skos:prefLabel "R927"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_39536efc_22a6_4f39_b0c2_e8b845a36278 -:electrochemistry_39536efc_22a6_4f39_b0c2_e8b845a36278 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_4ebe2ef1_eea8_4b10_822d_7a68215bd24d - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "coulometry at a preselected constant potential of the working electrode"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Direct coulometry at controlled potential is usually carried out in convective mass trans- fer mode using a large surface working electrode. Reference and auxiliary electrodes are placed in separate compartments. The total electric charge is obtained by integration of the I–t curve or can be measured directly using a coulometer."@en , - """In principle, the end point at which I = 0, i.e. when the concentration of species under study becomes zero, can be reached only at infinite time. However, in practice, the electrolysis is stopped when the current has decayed to a few percent of the initial value and the charge passed at infinite time is calculated from a plot of charge Q(t) against time t. For a simple system under diffusion control Qt= Q∞[1 − exp(−DAt/Vδ)], where Q∞ = limt→∞Q(t) is the total -charge passed at infinite time, D is the diffusion coefficient of the electroactive species, A the electrode area, δ the diffusion layer thickness, and V the volume of the solution."""@en ; - skos:prefLabel "DirectCoulometryAtControlledPotential"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 rdf:type owl:Class ; + owl:equivalentClass [ rdf:type owl:Restriction ; + owl:onProperty :electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f ; + owl:someValuesFrom :electrochemistry_2522cbd8_5382_457f_b9b5_775860f83357 + ] ; rdfs:subClassOf :electrochemistry_eacb141f_6ab4_491f_8603_a3e025cefc82 ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "a round-type case with a height that is less than the diameter"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a round-type case with a height that is less than the diameter"@en ; skos:altLabel "ButtonCase"@en ; skos:prefLabel "CoinCase"@en . @@ -1689,52 +1841,22 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "AnnularWorkingElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b35e843_3132_41e3_b6df_541cd45ba880 -:electrochemistry_3b35e843_3132_41e3_b6df_541cd45ba880 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the amount of an accumulated species is measured by voltammetry. The measured electric current in step 2 is related to the concentration of analyte in the solution by calibration."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Electrochemical_stripping_analysis"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Anodic stripping voltammetry (ASV) was historically used to measure concentrations of metal ions in solution using cathodic accumulation with mercury to form an amalgam. Due to the toxicity of mercury and its compounds, inductively coupled plasma optical emission spectrometry and inductively coupled plasma mass spectrometry have frequently replaced ASV at mercury electrodes in the laboratory, often sacrificing the probing of speciation and lability in complex matrices. Mercury has now been replaced by non-toxic bismuth or anti- mony as films on a solid electrode support (such as glassy carbon) with equally good sensi- tivity and detection limits."@en , - "Because the accumulation (pre-concentration) step can be prolonged, increasing the amount of material at the electrode, stripping voltammetry is able to measure very small concentrations of analyte."@en , - "Often the product of the electrochemical stripping is identical to the analyte before the accumulation."@en , - "Stripping voltammetry is a calibrated method to establish the relation between amount accumulated in a given time and the concentration of the analyte in solution."@en , - "Types of stripping voltammetry refer to the kind of accumulation (e.g. adsorptive stripping voltammetry) or the polarity of the stripping electrochemistry (anodic, cathodic stripping voltammetry)."@en ; - skos:prefLabel "StrippingVoltammetry"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b048a62_8591_4bf1_8fac_3d647beb9323 +:electrochemistry_3b048a62_8591_4bf1_8fac_3d647beb9323 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 21 mm and height of 70 mm"@en ; + skos:altLabel "R21/70" , + "R2170" ; + skos:prefLabel "R21700" . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3c3972f6_8e1d_454b_a198_48173ba2232b -:electrochemistry_3c3972f6_8e1d_454b_a198_48173ba2232b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry in which potential pulses of amplitude increasing by a constant increment and with a pulse width of 2 to 200 ms are superimposed on a constant initial potential"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Normal pulse polarography is NPV in which a dropping mercury electrode is used as the working electrode. A pulse is applied just before the mechanically enforced end of the drop. The pulse width is usually 10 to 20 % of the drop time. The drop dislodgment is synchro- nized with current sampling, which is carried out just before the end of the pulse, as in NPV."@en , - "Sigmoidal wave-shaped voltammograms are obtained."@en , - "The current is sampled at the end of the pulse and then plotted versus the potential of the pulse."@en , - "The current is sampled just before the end of the pulse, when the charging current is greatly diminished. In this way, the ratio of faradaic current to charging current is enhanced and the negative influence of charging current is partially eliminated. Due to the improved signal (faradaic current) to noise (charging current) ratio, the limit of detec- tion is lowered."@en , - "The sensitivity of NPV is not affected by the reversibility of the electrode reaction of the analyte."@en ; - skos:altLabel "NPV"@en ; - skos:prefLabel "NormalPulseVoltammetry"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b714a22_4212_4f4f_b578_140c357b18de +:electrochemistry_3b714a22_4212_4f4f_b578_140c357b18de rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 21 mm, width of 173 mm, and height of 85 mm"@en ; + skos:altLabel "P21/173/85" , + "PHEV1" ; + skos:prefLabel "P2117385" . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 @@ -1745,6 +1867,15 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact :electrochemistry_3cfdfc10_a5cb_4e3e_b1a1_281010d1465c rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3d2f9945_2319_4a08_899b_6a5ffabd4925 +:electrochemistry_3d2f9945_2319_4a08_899b_6a5ffabd4925 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 18 mm and height of 65 mm"@en ; + skos:altLabel "R18/65" , + "R1865" ; + skos:prefLabel "R18650" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3d805c2a_4801_440e_9e4d_0fa5585c76ae :electrochemistry_3d805c2a_4801_440e_9e4d_0fa5585c76ae rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_e5438930_04e7_4d42_ade5_3700d4a52ab7 ; @@ -1848,18 +1979,6 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "TungstenOxideElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3fe63496_6d87_427a_b2aa_4555bc31ee1a -:electrochemistry_3fe63496_6d87_427a_b2aa_4555bc31ee1a rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "techniques based on measurement of current at a constant controlled potential"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Amperometry can be distinguished from voltammetry by the parameter being controlled (electrode potential E) and the parameter being measured (electrode current I which is usually a function of time – see chronoamperometry)."@en , - "In a non-stirred solution, a diffusion-limited current is usually measured, which is propor-tional to the concentration of an electroactive analyte."@en , - "The current is usually faradaic and the applied potential is usually constant."@en , - "The integral of current with time is the electric charge, which may be related to the amount of substance reacted by Faraday’s laws of electrolysis."@en ; - skos:prefLabel "Amperometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_400cb3e0_27b5_4d9a_be80_f86ad2757763 :electrochemistry_400cb3e0_27b5_4d9a_be80_f86ad2757763 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -1881,8 +2000,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_403c300e_09b9_400b_943b_04e82a3cfb56 :electrochemistry_403c300e_09b9_400b_943b_04e82a3cfb56 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_09a7f560_9ddf_4c32_b067_b213eca5b0a1 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a porous electrode which is coated onto a non-porous substrate, typically a metallic foil current collector."@en ; - skos:prefLabel "PorousElectrodeCoating"@en . + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which is coated onto a substrate, typically a metallic foil current collector."@en ; + skos:prefLabel "ElectrodeCoating"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_40ca9548_910a_48b6_9a26_f94095d349cd @@ -1911,9 +2030,18 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "SingleCoatedElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_41ab11ec_af9f_401d_b80d_474c1dc86cd6 +:electrochemistry_41ab11ec_af9f_401d_b80d_474c1dc86cd6 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 40 mm, width of 148 mm, and height of 95 mm"@en ; + skos:altLabel "P40/148/95" ; + skos:prefLabel "P4014895" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_41ddf723_245f_4ce8_b9b1_7d9b3b9eea7d :electrochemistry_41ddf723_245f_4ce8_b9b1_7d9b3b9eea7d rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_f3e7979a_e3ef_450a_8762_7d8778afe478 @@ -1935,6 +2063,10 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 rdf:type owl:Class ; + owl:equivalentClass [ rdf:type owl:Restriction ; + owl:onProperty :electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f ; + owl:someValuesFrom :electrochemistry_83fbc038_0c2e_4d04_91d7_cdf30f8a5535 + ] ; rdfs:subClassOf :electrochemistry_1aec4cc0_82d5_4042_a657_ed7fe291c3d8 , [ rdf:type owl:Restriction ; owl:onProperty emmo:EMMO_0aa934ee_1ad4_4345_8a7f_bc73ec67c7e5 ; @@ -1957,20 +2089,10 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact owl:someValuesFrom :electrochemistry_4a5660bd_1c1a_40e5_8a41_463c720d3903 ] ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a rigid prismatic case that is described by characteristic length, width, and height"@en ; + rdfs:comment "often represented in cell designations by the letter P"@en ; skos:prefLabel "PrismaticCase"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_43ce1a7e_8056_40cb_bdbd_4ce991af1821 -:electrochemistry_43ce1a7e_8056_40cb_bdbd_4ce991af1821 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical measurement principle based on the measurement of the dielectric constant of a sample resulting from the orientation of particles (molecules or ions) that have a dipole moment in an electric field"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Dielectrometric titrations use dielectrometry for the end-point detection."@en , - "The method is used to monitor the purity of dielectrics, for example to detect small amounts of moisture."@en ; - skos:prefLabel "Dielectrometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_444992e5_43f8_44a1_9767_b408dbe54330 :electrochemistry_444992e5_43f8_44a1_9767_b408dbe54330 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_e3d3d21c_cb9a_498c_bdb0_63c964f0d3c6 ; @@ -2019,6 +2141,15 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "ChargeTimePlot"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_468b3b63_b62a_4110_8c7e_40fffd5fdfd6 +:electrochemistry_468b3b63_b62a_4110_8c7e_40fffd5fdfd6 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on manganese phosphate"@en ; + rdfs:comment "often represented in cell designations by the letter Mp"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "ManganesePhosphateBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_46957d35_0f8b_4d92_acb3_aded6ce774a1 :electrochemistry_46957d35_0f8b_4d92_acb3_aded6ce774a1 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_f49b84d4_e1f9_424c_bb22_8cea23c0a7d4 ; @@ -2133,7 +2264,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4a13e538_4c08_4ba9_8ebc_98a866208e01 :electrochemistry_4a13e538_4c08_4ba9_8ebc_98a866208e01 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_97439fbb_155f_433d_9edd_d510cd491f24 @@ -2193,6 +2325,14 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "LithiumInsertionElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4ca551d2_2969_4c18_96ce_db99831ed0af +:electrochemistry_4ca551d2_2969_4c18_96ce_db99831ed0af rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 12 mm, width of 120 mm, and height of 85 mm"@en ; + skos:altLabel "P12/120/85" ; + skos:prefLabel "P1212085" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4d09ddc4_7e71_4712_afab_b33d8df38983 :electrochemistry_4d09ddc4_7e71_4712_afab_b33d8df38983 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_06658d8d_dcde_4fc9_aae1_17f71c0bcdec , @@ -2266,7 +2406,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_4edb47d6_107c_40a2_be7c_6b26e9d296da :electrochemistry_4edb47d6_107c_40a2_be7c_6b26e9d296da rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is sodium manganese hexacyanoferrate"@en ; skos:prefLabel "SodiumManganeseHexacyanoferrateElectrode"@en . @@ -2292,7 +2433,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_502a98a3_ce47_421f_8e0a_016ed171c900 :electrochemistry_502a98a3_ce47_421f_8e0a_016ed171c900 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_d54f6aac_7cd2_4d52_9bca_2f19bb1eaec4 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_c5582dae_ccff_4fbe_adaa_078091054640 @@ -2301,6 +2443,14 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "SodiumIronPhosphateElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_50d9652c_6b68_457c_bd72_f89a8e549bcf +:electrochemistry_50d9652c_6b68_457c_bd72_f89a8e549bcf rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 27 mm, width of 148 mm, and height of 98 mm"@en ; + skos:altLabel "P27/148/98" ; + skos:prefLabel "P2714898" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_510e4061_c4fa_49aa_a052_23ad56098eda :electrochemistry_510e4061_c4fa_49aa_a052_23ad56098eda rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_5adb91e0_ffe1_41f3_b779_c6966f65fb0e , @@ -2334,15 +2484,6 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_52501237_0c13_4bfb_aa3a_441c6a9ae3a6 -:electrochemistry_52501237_0c13_4bfb_aa3a_441c6a9ae3a6 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "titration in which the titrant is generated electrochemically, either by constant current or at constant potential. The titrant reacts stoichiometrically with the analyte, the amount of which is calculated using Faraday’s laws of electrolysis from the electric charge required to reach the end-point"@en ; - rdfs:comment "Coulometric titrations are usually carried out in convective mass transfer mode using a large surface working electrode. The reference and auxiliary electrodes are located in sepa- rate compartments. A basic requirement is a 100 % current efficiency of titrant generation at the working electrode. End-point detection can be accomplished with potentiometry, amperometry, biamperometry, bipotentiometry, photometry, or by using a visual indicator."@en , - "The main advantages are that titration is possible with less stable titrants, the standardi- zation of titrant is not necessary, the volume of the test solution is not changed, and the method is easily automated."@en ; - skos:prefLabel "CoulometricTitration"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 rdf:type owl:Class . @@ -2381,6 +2522,14 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "CurrentControlledProcess"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56177336_3ae5_48cb_93ca_a8c73216ea73 +:electrochemistry_56177336_3ae5_48cb_93ca_a8c73216ea73 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 40 mm and height of 108 mm"@en ; + skos:altLabel "R40/108" ; + skos:prefLabel "R40108"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916 :electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_19abaccd_43be_4048_965c_e4fb63c5951b ; @@ -2405,38 +2554,13 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "OrganicElectrolyte"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56da3bb3_a0ce_40ed_b152_d3c14329d31a -:electrochemistry_56da3bb3_a0ce_40ed_b152_d3c14329d31a rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_b3e56313_417c_42b7_a934_0018ce2dffc2 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_85e39686_9658_4c74_bb91_a935704c174a - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Differential Pulse Voltammetry in which small potential pulses are superimposed onto a staircase potential ramp."@en ; - skos:prefLabel "DifferentialStaircasePulseVoltammetry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_56da3bb3_a0ce_40ed_b152_d3c14329d31a ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "Differential Pulse Voltammetry in which small potential pulses are superimposed onto a staircase potential ramp."@en ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56def0d5_fe57_40d7_85e3_97872fa2a3e1 +:electrochemistry_56def0d5_fe57_40d7_85e3_97872fa2a3e1 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 17 mm, width of 148 mm, and height of 91 mm"@en ; + skos:altLabel "P17/148/91" , + "PHEV2" ; + skos:prefLabel "P1714891" . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_56f85b19_1384_4e88_b130_cb8e7984db83 @@ -2500,21 +2624,6 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "Record"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5a0f3b6a_10b4_43a7_b0b6_4eb5c077980e -:electrochemistry_5a0f3b6a_10b4_43a7_b0b6_4eb5c077980e rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "linear scan voltammetry with slow scan rate in which a dropping mercury electrode is used as the working electrode"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "If the whole scan is performed on a single growing drop, the technique should be called single drop scan voltammetry. The term polarography in this context is discouraged."@en , - "This is the oldest variant of polarographic techniques, introduced by Jaroslav Heyrovský (1890 – 1967)."@en , - "Usually the drop time is between 1 and 5 s and the pseudo-steady-state wave-shaped dependence on potential is called a polarogram. If the limiting current is controlled by dif- fusion, it is expressed by the Ilkovich equation."@en ; - skos:prefLabel "DCPolarography"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5a7a3028_db9e_4045_ab68_054c6afc91fc :electrochemistry_5a7a3028_db9e_4045_ab68_054c6afc91fc rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_9c32fd69_f480_4130_83b3_fb25d9face14 ; @@ -2535,6 +2644,7 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5c0fdc09_166e_40a6_ad74_be66f0db51bc :electrochemistry_5c0fdc09_166e_40a6_ad74_be66f0db51bc rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_9a823d64_9d10_4a29_9cbd_9bbdad7985bc , + :electrochemistry_f2c33088_224f_4fdb_857a_7cb62e3dddca , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_9da78aea_d436_40e2_a68f_c3dee32b825e @@ -2564,6 +2674,15 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact :electrochemistry_5ce6a328_713c_4383_ad63_26c902c30e34 rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1 +:electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on iron"@en ; + rdfs:comment "often represented in cell designations by the letter F"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "IronBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5f9a9411_05f9_4576_acd3_81d7d41cfe98 :electrochemistry_5f9a9411_05f9_4576_acd3_81d7d41cfe98 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; @@ -2643,38 +2762,18 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "AlkalineElectrolyte"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_61740c42_d332_492c_8b37_90a187c7f6d9 -:electrochemistry_61740c42_d332_492c_8b37_90a187c7f6d9 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_3b35e843_3132_41e3_b6df_541cd45ba880 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q4016325" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "stripping voltammetry in which material accumulated at the working electrode is electrochemically reduced in the stripping step"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "A peak-shaped cathodic stripping voltammogram is obtained. Peak current depends on time of accumulation, mass transport of analyte (stirring), scan rate and mode (linear or pulse), and analyte concentration in solution."@en ; - skos:altLabel "CSV"@en ; - skos:prefLabel "CathodicStrippingVoltammetry"@en . - - -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_618538fa_6607_45a3_ad06_6a5f98febcbd -:electrochemistry_618538fa_6607_45a3_ad06_6a5f98febcbd rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_f046d602_22ea_4f9b_9101_319f510d39f0 - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "chronopotentiometry where the applied current is changed linearly"@en ; - skos:prefLabel "LinearChronopotentiometry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_618538fa_6607_45a3_ad06_6a5f98febcbd ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "chronopotentiometry where the applied current is changed linearly"@en ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109." - ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_619c2e56_077d_4bb4_9062_65fb75763651 +:electrochemistry_619c2e56_077d_4bb4_9062_65fb75763651 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 27 mm, width of 148 mm, and height of 129 mm"@en ; + skos:altLabel "P27/148/129" ; + skos:prefLabel "P27148129" . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6235cc7c_2eee_432a_93af_47d7e05db007 :electrochemistry_6235cc7c_2eee_432a_93af_47d7e05db007 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_9a823d64_9d10_4a29_9cbd_9bbdad7985bc , + :electrochemistry_f2c33088_224f_4fdb_857a_7cb62e3dddca , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_5cee19d2_f916_4264_a8ed_efed13a808d2 @@ -2727,15 +2826,6 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "WaveSpring"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b -:electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e8cedede_5685_4625_9abe_64f62b5ddcb6 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "potentiometry in which the potential is measured with time following a change in applied current"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "The change in applied current is usually a step, but cyclic current reversals or linearly increasing currents are also used."@en ; - skos:prefLabel "Chronopotentiometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_63ea1c9b_0bda_4a69_9745_efb08e6be685 :electrochemistry_63ea1c9b_0bda_4a69_9745_efb08e6be685 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_19abaccd_43be_4048_965c_e4fb63c5951b ; @@ -2753,20 +2843,6 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 -:electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 rdf:type owl:Class ; - rdfs:subClassOf emmo:EMMO_314d0bd5_67ed_437e_a609_36d46147cea7 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1530469" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=112-04-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "phenomenon serving as the basis of a measurement"@en ; - emmo:EMMO_b432d2d5_25f4_4165_99c5_5935a7763c1a "Energy absorption applied to the measurement of amount-of-substance concentration."@en , - "Hall effect applied to the measurement of magnetic flux density."@en , - "Thermoelectric effect applied to the measurement of temperature."@en ; - rdfs:comment "The phenomenon can be of a physical, chemical, or biological nature."@en ; - skos:altLabel "PrincipleOfMeasurement"@en ; - skos:prefLabel "MeasurementPrinciple"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6559c04d_75bc_41ea_8ed8_8d3c09dae6b0 :electrochemistry_6559c04d_75bc_41ea_8ed8_8d3c09dae6b0 rdf:type owl:Class ; rdfs:subClassOf ; @@ -2818,6 +2894,12 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact :electrochemistry_6769536b_5320_4b48_a2d8_ac285ec635a8 rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6775b232_c58a_4303_8164_137261329db6 +:electrochemistry_6775b232_c58a_4303_8164_137261329db6 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 ; + skos:prefLabel "Prismatic"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff :electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -2841,6 +2923,14 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "Binder"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_69e59b3d_b19d_4f8e_8b9c_84eb64307626 +:electrochemistry_69e59b3d_b19d_4f8e_8b9c_84eb64307626 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 54 mm and height of 137 mm"@en ; + skos:altLabel "R54/137" ; + skos:prefLabel "R54137"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b1f594f_2c0a_46a0_8805_d6ab08baa75e :electrochemistry_6b1f594f_2c0a_46a0_8805_d6ab08baa75e rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_aff732a9_238a_4734_977c_b2ba202af126 ; @@ -2886,7 +2976,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6d0fe07e_a629_479c_ab24_2846f209bb0b :electrochemistry_6d0fe07e_a629_479c_ab24_2846f209bb0b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_acdb232f_8041_4e11_8a11_5db2d2baae4d @@ -2900,18 +2991,12 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 rdf:type owl:Class . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 -:electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1136979" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-13" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical measurement principle in which the electric charge required to carry out a known electrochemical reaction is measured. By Faraday’s laws of electrolysis, the amount of substance is proportional to the charge"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Coulometry"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Coulometry used to measure the amount of substance is a primary reference measurement procedure [VIM 2.8] not requiring calibration with a standard for a quantity of the same kind (i.e. amount of substance)."@en , - "The coulometric experiment can be carried out at controlled (constant) potential (see direct coulometry at controlled potential) or controlled (constant) current (see direct coulometry at controlled current)."@en ; - skos:prefLabel "Coulometry"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6eaa3c0d_e1f3_4c6e_91a6_9b8c5a21b8cb +:electrochemistry_6eaa3c0d_e1f3_4c6e_91a6_9b8c5a21b8cb rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 40 mm and height of 92 mm"@en ; + skos:altLabel "R40/92" ; + skos:prefLabel "R40920"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6ec59f99_5f26_4a7d_9b90_b52e0f8ad190 @@ -2923,14 +3008,12 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "SilverChlorideElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6f0dc7c0_ba12_4390_9564_f10f85a1779a -:electrochemistry_6f0dc7c0_ba12_4390_9564_f10f85a1779a rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_5a0f3b6a_10b4_43a7_b0b6_4eb5c077980e ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "DC polarography with current sampling at the end of each drop life mechanically enforced by a knocker at a preset drop time value. The current sampling and mechanical drop dislodge are synchronized."@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "In this way, the ratio of faradaic current to double layer charging current is enhanced and the negative influence of charging current is partially eliminated. Due to the improved signal (faradaic current) to noise (charging current) ratio, the limit of detection is lowered."@en ; - skos:altLabel "TASTPolarography"@en ; - skos:prefLabel "SampledDCPolarography"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6ee40e33_ccbf_410e_a8fa_047a9eae0362 +:electrochemistry_6ee40e33_ccbf_410e_a8fa_047a9eae0362 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 27 mm and height of 66 mm"@en ; + skos:altLabel "R27/66" ; + skos:prefLabel "R27660"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 @@ -3001,6 +3084,14 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7018bd4e_6ca1_44eb_a558_6585c0bf8547 +:electrochemistry_7018bd4e_6ca1_44eb_a558_6585c0bf8547 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 27 mm, width of 70 mm, and height of 120 mm"@en ; + skos:altLabel "P27/70/120" ; + skos:prefLabel "P2770120" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_712c791a_d593_4732_af73_493f7bc50999 :electrochemistry_712c791a_d593_4732_af73_493f7bc50999 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_904b12e0_4a10_47b0_b7db_592aba215cb6 ; @@ -3011,35 +3102,13 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_713200a1_952b_49e2_90b7_deba229f6bbe :electrochemistry_713200a1_952b_49e2_90b7_deba229f6bbe rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_468b3b63_b62a_4110_8c7e_40fffd5fdfd6 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is lithium manganese phosphate"@en ; skos:altLabel "LMPElectrode"@en ; skos:prefLabel "LithiumManganesePhosphateElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_729a1064_d039_4b74_9d1d_759b18a3971c -:electrochemistry_729a1064_d039_4b74_9d1d_759b18a3971c rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_3fe63496_6d87_427a_b2aa_4555bc31ee1a , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "amperometry in which the current is measured as a function of time after a change in the applied potential"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "If the potential step is from a potential at which no current flows (i.e., at which the oxidation or reduction of the electrochemically active species does not take place) to one at which the current is limited by diffusion (see diffusion-limited current), the current obeys the Cottrell equation."@en ; - skos:altLabel "AmperiometricDetection"@en , - "AmperometricCurrentTimeCurve"@en ; - skos:prefLabel "Chronoamperometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7393f12f_e3b9_42d6_bffb_e5613f53108f :electrochemistry_7393f12f_e3b9_42d6_bffb_e5613f53108f rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_dc205ac2_314e_415c_a2b6_b12e8359d54c ; @@ -3048,30 +3117,12 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact skos:prefLabel "ZincChlorideSolution"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7416a831_ba72_447c_bf83_3989ba2dfe37 -:electrochemistry_7416a831_ba72_447c_bf83_3989ba2dfe37 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_6769536b_5320_4b48_a2d8_ac285ec635a8 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_85e39686_9658_4c74_bb91_a935704c174a - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "chronopotentiometry where the applied current is changed in steps"@en ; - skos:prefLabel "StepChronopotentiometry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_7416a831_ba72_447c_bf83_3989ba2dfe37 ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "chronopotentiometry where the applied current is changed in steps"@en ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109." - ] . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_74459386_875c_4303_b774_60125b599d06 :electrochemistry_74459386_875c_4303_b774_60125b599d06 rdf:type owl:Class ; + owl:equivalentClass [ rdf:type owl:Restriction ; + owl:onProperty :electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f ; + owl:someValuesFrom :electrochemistry_af751d07_f0b7_43c7_911d_cba864189b2b + ] ; rdfs:subClassOf :electrochemistry_1aec4cc0_82d5_4042_a657_ed7fe291c3d8 , [ rdf:type owl:Restriction ; owl:onProperty emmo:EMMO_0aa934ee_1ad4_4345_8a7f_bc73ec67c7e5 ; @@ -3086,6 +3137,7 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact owl:someValuesFrom emmo:EMMO_e4de48b1_dabb_4490_ac2b_040f926c64f0 ] ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a soft pouch case that is described by its length, width, and height"@en ; + rdfs:comment "often represented in cell designations by the letter P"@en ; skos:prefLabel "PouchCase"@en . @@ -3122,7 +3174,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_76e461aa_5948_4a68_8337_284d11e0fd7d :electrochemistry_76e461aa_5948_4a68_8337_284d11e0fd7d rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a @@ -3134,7 +3187,8 @@ charge passed at infinite time, D is the diffusion coefficient of the electroact ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_76fe8fb2_868e_48eb_95ca_fc6acd6f5fc9 :electrochemistry_76fe8fb2_868e_48eb_95ca_fc6acd6f5fc9 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_d673ceb2_3045_4e2e_8cad_56f5169b542f @@ -3196,6 +3250,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "IncreasingPotentialPulses"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_780aeb7b_9eb2_4324_ba2d_1a874136b4e5 +:electrochemistry_780aeb7b_9eb2_4324_ba2d_1a874136b4e5 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 ; + skos:prefLabel "Cylindrical"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 , @@ -3424,6 +3484,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "LiquidGalliumElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8112c7ba_e58a_463b_8661_b836bb6d7c86 +:electrochemistry_8112c7ba_e58a_463b_8661_b836bb6d7c86 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 32 mm, width of 173 mm, and height of 115 mm"@en ; + skos:altLabel "BEV1" , + "P32/173/115" ; + skos:prefLabel "P32173115" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_81833d8a_b03d_4250_be84_6385415beb01 :electrochemistry_81833d8a_b03d_4250_be84_6385415beb01 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82 , @@ -3443,40 +3512,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_81b7c95b_8671_4ba7_b4f8_ec19a25096eb -:electrochemistry_81b7c95b_8671_4ba7_b4f8_ec19a25096eb rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_b3e56313_417c_42b7_a934_0018ce2dffc2 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom emmo:EMMO_90e59882_4592_4036_a75d_5fbefb22dc80 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_3cd0e74e_292c_48ed_a831_4cb8753d9a56 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_4d2b102b_3515_4591_b079_69232c44f9dc - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Differential Pulse Voltammetry in which small potential pulses are superimposed onto a linearly varying potential."@en ; - skos:prefLabel "DifferentialLinearPulseVoltammetry"@en . - -[ rdf:type owl:Axiom ; - owl:annotatedSource :electrochemistry_81b7c95b_8671_4ba7_b4f8_ec19a25096eb ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedTarget "Differential Pulse Voltammetry in which small potential pulses are superimposed onto a linearly varying potential."@en ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_825a749f_dd07_46fb_947c_db286440911e :electrochemistry_825a749f_dd07_46fb_947c_db286440911e rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_463bcfda_867b_41d9_a967_211d4d437cfb , @@ -3519,6 +3554,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "ConductiveAdditive"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a +:electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on cobalt"@en ; + rdfs:comment "often represented in cell designations by the letter C"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "CobaltBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83d2c2d4_ffa9_42f4_9264_a0c59c657607 :electrochemistry_83d2c2d4_ffa9_42f4_9264_a0c59c657607 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_f49b84d4_e1f9_424c_bb22_8cea23c0a7d4 ; @@ -3693,7 +3737,7 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_898971cb_a9fc_4955_8abf_5d7163a9fe6c :electrochemistry_898971cb_a9fc_4955_8abf_5d7163a9fe6c rdf:type owl:Class ; - rdfs:subClassOf emmo:EMMO_3e7add3d_e6ed_489a_a796_8e31fef9b490 ; + rdfs:subClassOf ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Time dependent variation of an electric quantity."@en ; skos:prefLabel "ElectricSignal"@en . @@ -3753,17 +3797,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "AirElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8ba8ec72_abd0_49eb_a06f_83fe5da108f4 -:electrochemistry_8ba8ec72_abd0_49eb_a06f_83fe5da108f4 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_3b35e843_3132_41e3_b6df_541cd45ba880 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q939328" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Stripping voltammetry in which material accumulated at the working electrode is electrochemically oxi- dized in the stripping step."@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "A peak-shaped anodic stripping voltammogram is obtained. Peak current depends on time of accumulation, mass transport of analyte (stirring), scan rate and mode (linear or pulse), and analyte concentration in solution."@en , - "A solid electrode, carbon paste or composite electrode, bismuth film electrode, mercury film electrode, or static mercury drop electrode may be used."@en ; - skos:prefLabel "AnodicStrippingVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8c71739c_27c1_4d19_a0ff_02545296af43 :electrochemistry_8c71739c_27c1_4d19_a0ff_02545296af43 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_52bbaaee_1145_4be3_8a5c_b366851ea1b9 ; @@ -3779,41 +3812,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8ca00b45_5ba6_48a0_aaf6_abd959a7238b -:electrochemistry_8ca00b45_5ba6_48a0_aaf6_abd959a7238b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom emmo:EMMO_852b4ab8_fc29_4749_a8c7_b92d4fca7d5a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_f591a444_89d6_4093_836d_7d53895edce4 - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120895154" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry in which a sinusoidal alternating potential of small amplitude (10 to 50 mV) of constant frequency (10 Hz to 100 kHz) is superimposed on a slowly and linearly varying potential ramp."@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "The resulting alternating current is plotted versus imposed DC potential. The obtained AC voltammogram is peak-shaped."@en ; - skos:altLabel "ACV"@en ; - skos:prefLabel "ACVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0acd0fc2_1048_4604_8e90_bf4e84bd87df ; @@ -3878,7 +3876,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9109b3f6_112b_456d_ae45_b82c271c656b :electrochemistry_9109b3f6_112b_456d_ae45_b82c271c656b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_468b3b63_b62a_4110_8c7e_40fffd5fdfd6 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is lithium manganese iron phosphate"@en ; skos:altLabel "LMFPElectrode"@en ; skos:prefLabel "LithiumManganeseIronPhosphateElectrode"@en . @@ -3935,12 +3934,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 , [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_dba27ca1_33c9_4443_a912_1519ce4c39ec ; - owl:someValuesFrom :electrochemistry_212af058_3bbb_419f_a9c6_90ba9ebb3706 + owl:onProperty :electrochemistry_4df9926d_d4f2_4955_93f3_a03c5edc5383 ; + owl:someValuesFrom :electrochemistry_403c300e_09b9_400b_943b_04e82a3cfb56 ] , [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_dba27ca1_33c9_4443_a912_1519ce4c39ec ; - owl:someValuesFrom :electrochemistry_403c300e_09b9_400b_943b_04e82a3cfb56 + owl:onProperty :electrochemistry_cc8c2c5d_cf3d_444d_a7e8_44ec4c06a88e ; + owl:someValuesFrom :electrochemistry_212af058_3bbb_419f_a9c6_90ba9ebb3706 ] ; emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-02"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "cell electrode consisting of a current collector and active material"@en ; @@ -3955,6 +3954,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_93358d9b_8976_42d0_84ae_e5a2400c3ea7 +:electrochemistry_93358d9b_8976_42d0_84ae_e5a2400c3ea7 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 13 mm, width of 120 mm, and height of 85 mm"@en ; + skos:altLabel "HEV1" , + "P13/120/85" ; + skos:prefLabel "P1312085" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_94209cd8_f68f_40e6_ac70_cfb97a16e593 :electrochemistry_94209cd8_f68f_40e6_ac70_cfb97a16e593 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -3970,6 +3978,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "R2032"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_948234f6_4095_4419_af30_00ab297a7694 +:electrochemistry_948234f6_4095_4419_af30_00ab297a7694 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 32 mm, width of 173 mm, and height of 225"@en ; + skos:altLabel "BEV3" , + "P32/173/225" ; + skos:prefLabel "P32173225" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_952c8c3a_df21_4dd1_8d8c_380e43dc8c78 :electrochemistry_952c8c3a_df21_4dd1_8d8c_380e43dc8c78 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_5adb91e0_ffe1_41f3_b779_c6966f65fb0e , @@ -3981,6 +3998,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "AluminiumElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_95d841eb_2002_4411_9f8e_927d6c60e4b3 +:electrochemistry_95d841eb_2002_4411_9f8e_927d6c60e4b3 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 26 mm and height of 65 mm"@en ; + skos:altLabel "R26/65" ; + skos:prefLabel "R26650" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_95e4aa95_b7e9_40d7_b78e_4d7dcc31093d :electrochemistry_95e4aa95_b7e9_40d7_b78e_4d7dcc31093d rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0acd0fc2_1048_4604_8e90_bf4e84bd87df ; @@ -4047,15 +4072,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "R3032"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_99bdbd45_c3ea_4fb9_ae50_ed1ab6bb1dff -:electrochemistry_99bdbd45_c3ea_4fb9_ae50_ed1ab6bb1dff rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_63dec5af_f3e9_46c9_8b0c_82516231d96b ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical method that measures the voltage drop of a cell resulting from a square wave current load"@en ; - skos:altLabel "HybridPulsePowerCharacterisation"@en , - "HybridPulsePowerCharacterization"@en ; - skos:prefLabel "HPPC"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9a23f61b_fef0_40f8_84f9_2057f90f6a95 :electrochemistry_9a23f61b_fef0_40f8_84f9_2057f90f6a95 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -4104,6 +4120,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "R2012"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 +:electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on titanium"@en ; + rdfs:comment "often represented in cell designations by the letter T"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "TitaniumBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9c73aff8_1c82_4116_a6be_78e21982b69d :electrochemistry_9c73aff8_1c82_4116_a6be_78e21982b69d rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_50044b99_b858_433b_a32d_23d1e1cf88b2 , @@ -4170,9 +4195,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "ElectrochemicalHalfCell"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9dc236d9_c962_4fcc_94db_911a25241472 +:electrochemistry_9dc236d9_c962_4fcc_94db_911a25241472 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 19 mm and height of 66 mm"@en ; + skos:altLabel "R19/66" ; + skos:prefLabel "R19660"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_9e24d403_8531_416e_a9ec_d1ec5508bcb1 :electrochemistry_9e24d403_8531_416e_a9ec_d1ec5508bcb1 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 @@ -4269,17 +4303,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a05e7945_c942_45cf_812c_c9a595d15888 -:electrochemistry_a05e7945_c942_45cf_812c_c9a595d15888 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_3b35e843_3132_41e3_b6df_541cd45ba880 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Stripping voltammetry involving pre-concentration by adsorption of the analyte (in contrast to electro- chemical accumulation)."@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "A peak-shaped adsorptive stripping voltammogram is obtained. Peak current depends on time of accumulation, mass transport of analyte (stirring), scan rate and mode (linear or pulse), and analyte concentration in solution."@en , - "AdSV is usually employed for analysis of organic compounds or metal complexes with organic ligands. Stripping is done by means of an anodic or a cathodic voltammetric scan (linear or pulse), during which the adsorbed compound is oxidized or reduced."@en ; - skos:altLabel "AdSV"@en ; - skos:prefLabel "AdsorptiveStrippingVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; @@ -4482,10 +4505,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "AlternatingCurrent"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5c1b56f_5c82_4e3b_800e_5a280331348b +:electrochemistry_a5c1b56f_5c82_4e3b_800e_5a280331348b rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 27 mm, width of 70 mm, and height of 102 mm"@en ; + skos:altLabel "P27/70/102" ; + skos:prefLabel "P2770102" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_19abaccd_43be_4048_965c_e4fb63c5951b , - :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 ; + :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 , + [ rdf:type owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom emmo:EMMO_8043d3c6_a4c1_4089_ba34_9744e28e5b3d + ] ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120892494" ; emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-02-01" , "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-01" ; @@ -4575,30 +4610,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a9f19bb0_55bc_4908_b0e4_7888077b0019 -:electrochemistry_a9f19bb0_55bc_4908_b0e4_7888077b0019 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_264f40d1_17c9_4bc7_9c47_5cfb18132278 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q620700" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Voltammetry in which the current is recorded as the electrode potential is varied linearly with time."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Linear_sweep_voltammetry"^^xsd:anyURI ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "LSV corresponds to the first half cycle of cyclic voltammetry."@en , - "The peak current is expressed by the Randles-Ševčík equation."@en , - "The scan is usually started at a potential where no electrode reaction occurs."@en ; - skos:altLabel "LSV"@en , - "LinearPolarization"@en , - "LinearSweepVoltammetry"@en ; - skos:prefLabel "LinearScanVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a9fc3f77_e48e_4bce_b118_044d608722f6 :electrochemistry_a9fc3f77_e48e_4bce_b118_044d608722f6 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_494b372c_cfdf_47d3_a4de_5e037c540de8 ; @@ -4692,6 +4703,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 +:electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 32 mm and height of 70 mm"@en ; + skos:altLabel "R32/70" ; + skos:prefLabel "R32700" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_f76884f7_964e_488e_9bb7_1b2453e9e817 ; @@ -4719,6 +4738,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s :electrochemistry_aecc6094_c6a5_4a36_a825_8a497a2ae112 rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_af751d07_f0b7_43c7_911d_cba864189b2b +:electrochemistry_af751d07_f0b7_43c7_911d_cba864189b2b rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_1586ef26_6d30_49e3_ae32_b4c9fc181941 ; + skos:prefLabel "Pouch"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_af92a3ae_e870_4676_9ae7_cda277b1e6e1 :electrochemistry_af92a3ae_e870_4676_9ae7_cda277b1e6e1 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -4726,6 +4751,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "R2354"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_afe918c7_0634_40c1_9421_78ea2fe707e3 +:electrochemistry_afe918c7_0634_40c1_9421_78ea2fe707e3 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 27 mm, width of 70 mm, and height of 131 mm"@en ; + skos:altLabel "P27/70/131" ; + skos:prefLabel "P2770131" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126 :electrochemistry_aff732a9_238a_4734_977c_b2ba202af126 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; @@ -4764,10 +4797,23 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 +:electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on manganese"@en ; + rdfs:comment "often represented in cell designations by the letter M"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "ManganeseBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a rdf:type owl:Class ; + owl:equivalentClass [ rdf:type owl:Restriction ; + owl:onProperty :electrochemistry_c17b514b_57f2_4f72_9b95_c2950dd2aa7f ; + owl:someValuesFrom :electrochemistry_780aeb7b_9eb2_4324_ba2d_1a874136b4e5 + ] ; rdfs:subClassOf :electrochemistry_eacb141f_6ab4_491f_8603_a3e025cefc82 ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "a round-type case with a height that is greater than or equal to the diameter"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a round-type case with a height that is greater than or equal to the diameter"@en ; skos:prefLabel "CylindricalCase"@en . @@ -4787,19 +4833,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3a6d552_b38e_47ad_9d48_e8b77035d63e -:electrochemistry_b3a6d552_b38e_47ad_9d48_e8b77035d63e rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q901180" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "measurement principle in which the electric conductivity of a solution is measured"@en ; - emmo:EMMO_b432d2d5_25f4_4165_99c5_5935a7763c1a "Monitoring of the purity of deionized water."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Conductometry"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "The conductivity of a solution depends on the concentration and nature of ions present."@en ; - skos:prefLabel "Conductometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3b3868f_6edd_4ce8_a984_08f9cf391f90 :electrochemistry_b3b3868f_6edd_4ce8_a984_08f9cf391f90 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 ; @@ -4817,27 +4850,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3e56313_417c_42b7_a934_0018ce2dffc2 -:electrochemistry_b3e56313_417c_42b7_a934_0018ce2dffc2 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_b49e2355_392f_4e83_b630_7ff4581d767b - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q5275361" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry in which small potential pulses (constant height 10 to 100 mV, constant width 10 to 100 ms) are superimposed onto a linearly varying potential or onto a staircase potential ramp. The current is sampled just before the onset of the pulse (e.g. 10 to 20 ms) and for the same sampling time just before the end of the pulse. The difference between the two sampled currents is plotted versus the potential applied before the pulse. Thus, a differential pulse voltammogram is peak-shaped"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Differential_pulse_voltammetry"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Differential pulse polarography is differential pulse voltammetry in which a dropping mercury electrode is used as the working electrode. A pulse is applied before the mechani- cally enforced end of the drop and the current is sampled twice: just before the onset of the pulse and just before its end. The pulse width is usually 10 to 20 % of the drop life. The drop dislodgement is synchronized with current sampling, which is carried out as in DPV."@en , - "The ratio of faradaic current to charging current is enhanced and the negative influence of charging current is partially eliminated in the same way as in normal pulse voltammetry (NPV). Moreover, subtraction of the charging current sampled before the application of the pulse further decreases its negative influence. Due to the more enhanced signal (faradaic current) to noise (charging current) ratio, the limit of detection is lower than with NPV."@en , - "The sensitivity of DPV depends on the reversibility of the electrode reaction of the analyte."@en ; - skos:altLabel "DPV"@en ; - skos:prefLabel "DifferentialPulseVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b3eb8c65_5644_45e3_9e17_0be6277c7962 :electrochemistry_b3eb8c65_5644_45e3_9e17_0be6277c7962 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_3ac62305_acd6_4312_9e31_4f824bd2530d @@ -4863,18 +4879,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s skos:prefLabel "DifferentialPotentialPulse"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b5039bc8_f595_4797_908a_7e86131fbde4 -:electrochemistry_b5039bc8_f595_4797_908a_7e86131fbde4 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential. The time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury."@en , - "The accumulation is similar to that used in stripping voltammetry."@en , - "The stripping potentiogram shows staircase curves of potential as a function of time. Fre- quently, the first derivative is displayed (dE/dt = f(t)), as this produces peak-shaped signals. The time between transitions (peaks) is proportional to the concentration of analyte in the test solution."@en ; - skos:altLabel "PSA"@en ; - skos:prefLabel "PotentiometricStrippingAnalysis"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0acd0fc2_1048_4604_8e90_bf4e84bd87df ; @@ -4901,7 +4905,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b5e91259_cd97_4ed6_9ab2_4b18ef68a35a :electrochemistry_b5e91259_cd97_4ed6_9ab2_4b18ef68a35a rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_0ee59786_b090_444d_a46d_505797d07ca4 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is lithium vanadium oxide"@en ; skos:prefLabel "LithiumVanadiumOxideElectrode"@en . @@ -5136,6 +5141,14 @@ of other configurations are used."""@en ; skos:prefLabel "LithiumNickelManganeseOxideLithiumIronPhosphateElectrode"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bba6b94e_c0d7_40bf_a9d6_413ff458397c +:electrochemistry_bba6b94e_c0d7_40bf_a9d6_413ff458397c rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en ; + skos:altLabel "P20/100/141" ; + skos:prefLabel "P20100141" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b9a72491_8a50_4cac_a131_1e95d72b57ee ; @@ -5254,6 +5267,14 @@ of other configurations are used."""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c066bf32_ed62_4a11_bf4f_25fe6e8e68b5 +:electrochemistry_c066bf32_ed62_4a11_bf4f_25fe6e8e68b5 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 32 mm and height of 134 mm"@en ; + skos:altLabel "R32/134" ; + skos:prefLabel "R32134" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c14ae9b3_e4ba_4129_a7b6_afd2d4571de6 :electrochemistry_c14ae9b3_e4ba_4129_a7b6_afd2d4571de6 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0acd0fc2_1048_4604_8e90_bf4e84bd87df ; @@ -5292,7 +5313,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c231227b_f318_4e59_ad90_6e91072903ed :electrochemistry_c231227b_f318_4e59_ad90_6e91072903ed rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 @@ -5335,6 +5357,14 @@ of other configurations are used."""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c54fbb75_0528_49c0_97e0_258798a947e4 +:electrochemistry_c54fbb75_0528_49c0_97e0_258798a947e4 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 12 mm, width of 120 mm, and height of 80 mm"@en ; + skos:altLabel "P12/120/80" ; + skos:prefLabel "P1212080" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_19abaccd_43be_4048_965c_e4fb63c5951b ; @@ -5352,7 +5382,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c5f51531_1452_4654_82e5_0505491c2c7d :electrochemistry_c5f51531_1452_4654_82e5_0505491c2c7d rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is sodium titanium oxide"@en ; skos:prefLabel "SodiumTitaniumOxideElectrode"@en . @@ -5426,6 +5457,7 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c831d963_629a_41ab_850f_97fb6841b739 :electrochemistry_c831d963_629a_41ab_850f_97fb6841b739 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_9a823d64_9d10_4a29_9cbd_9bbdad7985bc , + :electrochemistry_f2c33088_224f_4fdb_857a_7cb62e3dddca , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_d53259a7_0d9c_48b9_a6c1_4418169df303 @@ -5516,7 +5548,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ca4d9efc_70be_441e_b358_d927aa4c36c4 :electrochemistry_ca4d9efc_70be_441e_b358_d927aa4c36c4 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 @@ -5528,7 +5561,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cab66388_3feb_4101_82bc_f4441f0b60e3 :electrochemistry_cab66388_3feb_4101_82bc_f4441f0b60e3 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_c28a0967_ed23_48cc_a14e_a651d75a19db @@ -5545,15 +5579,6 @@ of other configurations are used."""@en ; skos:prefLabel "FormationCycling"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cb3c0663_5962_4b79_8e72_1e8242af3977 -:electrochemistry_cb3c0663_5962_4b79_8e72_1e8242af3977 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 , - :electrochemistry_e8cedede_5685_4625_9abe_64f62b5ddcb6 ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant at 0 (i.e., open-circuit conditions)"@en ; - skos:altLabel "OCVHold"@en ; - skos:prefLabel "OpenCircuitHold"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cba03815_eaa8_493d_b9e4_52856b57fde6 :electrochemistry_cba03815_eaa8_493d_b9e4_52856b57fde6 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , @@ -5568,7 +5593,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc0468a2_1851_4d3d_92a6_b4059db0c056 :electrochemistry_cc0468a2_1851_4d3d_92a6_b4059db0c056 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_468b3b63_b62a_4110_8c7e_40fffd5fdfd6 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 @@ -5646,7 +5672,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cff80dd5_19a9_4357_8fb9_410a978153e2 :electrochemistry_cff80dd5_19a9_4357_8fb9_410a978153e2 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; + rdfs:subClassOf :electrochemistry_9c557caa_61e2_4fa9_a517_4bad01a68122 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrode in which the active material is sodium titanium phosphate"@en ; skos:prefLabel "SodiumTitaniumPhosphateElectrode"@en . @@ -5665,13 +5692,23 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d1042a12_e4be_4992_86cb_59420ef4e05c :electrochemistry_d1042a12_e4be_4992_86cb_59420ef4e05c rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q865807" ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q865807" , + "https://www.wikidata.org/wiki/Q865807"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a generic denomination of particles or quasiparticles responsible for electric charge transport."@en ; emmo:EMMO_b432d2d5_25f4_4165_99c5_5935a7763c1a "electron, hole, ion"@en ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Charge_carrier"@en ; skos:prefLabel "ChargeCarrier"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d1199193_b203_4fcb_971c_ccf6332973ae +:electrochemistry_d1199193_b203_4fcb_971c_ccf6332973ae rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 12 mm, width of 120 mm, and height of 81 mm"@en ; + skos:altLabel "HEV2" , + "P12/120/81" ; + skos:prefLabel "P1212081" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d11b0e66_c35b_4da7_80a1_037ce89b77fb :electrochemistry_d11b0e66_c35b_4da7_80a1_037ce89b77fb rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91 ; @@ -5687,6 +5724,14 @@ of other configurations are used."""@en ; skos:prefLabel "PassivationLayer"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d1bf3cdd_d618_40e3_b055_a952ef632157 +:electrochemistry_d1bf3cdd_d618_40e3_b055_a952ef632157 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 18 mm, width of 68 mm, and height of 107 mm"@en ; + skos:altLabel "P18/68/107" ; + skos:prefLabel "P1868107" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7 :electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_9a823d64_9d10_4a29_9cbd_9bbdad7985bc , @@ -5709,18 +5754,6 @@ of other configurations are used."""@en ; skos:prefLabel "CycleDomainMatrix"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d30d9de0_b9bf_4919_a022_0394df9c3672 -:electrochemistry_d30d9de0_b9bf_4919_a022_0394df9c3672 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_07ad0aff_ab59_442d_9c0a_7f8c5cba8982 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q3492904"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical measurement method of the complex impedance of an electrochemical system as a function of the frequency of a small amplitude (normally 5 to 10 mV) sinusoidal voltage perturbation superimposed on a fixed value of applied potential or on the open circuit potential"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Impedimetric sensors are based on measurement of a concentration-dependent parameter taken from analysis of the respective electrochemical impedance spectra, or from the impedance magnitudes at a chosen fixed frequency."@en , - "The sinusoidal current response lags behind the sinusoidal voltage perturbation by a phase angle φ. Resistances (e.g. to charge transfer) give a response in phase with the voltage perturbation; capacitances (e.g. double layer) give a response 90° out of phase; combinations of resistances and capacitances give phase angles between 0 and 90°. Plots of the out of phase vs. the in phase component of the impedance for all the frequencies tested are called complex plane (or Nyquist) plots. Plots of the phase angle and the magnitude of the impedance vs. the logarithm of perturbation frequency are called Bode diagrams. Complex plane plots are the more commonly used for electrochemical sensors."@en ; - skos:altLabel "EIS"@en ; - skos:prefLabel "ElectrochemicalImpedanceSpectroscopy"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d359386f_ae2d_4ad4_9616_464e2111b67d :electrochemistry_d359386f_ae2d_4ad4_9616_464e2111b67d rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 ; @@ -5780,6 +5813,15 @@ of other configurations are used."""@en ; skos:prefLabel "ButlerVolmerEquation"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d54f6aac_7cd2_4d52_9bca_2f19bb1eaec4 +:electrochemistry_d54f6aac_7cd2_4d52_9bca_2f19bb1eaec4 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on iron phosphate"@en ; + rdfs:comment "often represented in cell designations by the letter Fp"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "IronPhosphateBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_52bbaaee_1145_4be3_8a5c_b366851ea1b9 ; @@ -5874,23 +5916,6 @@ of other configurations are used."""@en ; skos:prefLabel "SodiumInsertionElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d95fdd2e_38bf_4065_a857_78eb201ee166 -:electrochemistry_d95fdd2e_38bf_4065_a857_78eb201ee166 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_270f239e_33cb_4c6d_a41c_875ec1262d62 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 - ] ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q17028237" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry with forced flow of the solution towards the electrode surface"@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Hydrodynamic_voltammetry"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "A linear potential scan, at sufficiently slow scan rates so as to ensure a steady state response, is usually applied."@en , - "Mass transport of a redox species enhanced by convection in this way results in a greater electric current. Convective mass transfer occurs up to the diffusion-limiting layer, within which the mass transfer is controlled by diffusion. Electroactive substance depletion outside the diffusion layer is annulled by convective mass transfer, which results in steady- state sigmoidal wave-shaped current-potential curves."@en , - "The forced flow can be accomplished by movement either of the solution (solution stirring, or channel flow), or of the electrode (electrode rotation or vibration)."@en ; - skos:prefLabel "HydrodynamicVoltammetry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d9888f1f_2226_4ce3_9cb3_91fd9bd1bf22 :electrochemistry_d9888f1f_2226_4ce3_9cb3_91fd9bd1bf22 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_757eae08_4d43_42d4_8b4e_8a0bfd2f9a1c ; @@ -6131,22 +6156,10 @@ of other configurations are used."""@en ; skos:prefLabel "SiliconGraphiteElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e8cedede_5685_4625_9abe_64f62b5ddcb6 -:electrochemistry_e8cedede_5685_4625_9abe_64f62b5ddcb6 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_10359c79_cdf2_401a_83ee_d22e7fbb2ad1 , - :electrochemistry_64bf0969_37a1_4aaf_82e9_68462847ac65 ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q900632" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-04-12" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "techniques based on the measurement of potential at controlled current (constant or equal to zero)"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "For measurements using ion-selective electrodes, the measurement is made under equi- librium conditions what means that the macroscopic electric current is zero and the con- centrations of all species are uniform throughout the solution. The indicator electrode is in direct contact with the analyte solution, whereas the reference electrode is usually separated from the analyte solution by a salt bridge. The potential difference between the indicator and reference electrodes is normally directly proportional to the logarithm of the activity (concentration) of the analyte in the solution (Nernst equation). See also ion selec- tive electrode."@en , - "Method of electroanalytical chemistry based on measurement of an electrode potential."@en ; - skos:prefLabel "Potentiometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e8d9e091_a56d_4a24_a305_d1bac55cfce3 :electrochemistry_e8d9e091_a56d_4a24_a305_d1bac55cfce3 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_b1ac8d0c_a215_4e60_82b0_38272eff5131 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_0139937b_2724_4864_84fb_f14bcfb83538 @@ -6204,18 +6217,6 @@ of other configurations are used."""@en ; ] . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e9639083_e9c5_4d0a_97e8_be1e139c179f -:electrochemistry_e9639083_e9c5_4d0a_97e8_be1e139c179f rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_b3a6d552_b38e_47ad_9d48_e8b77035d63e ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q11778221" ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "titration in which the electric conductivity of a solution is measured as a function of the amount of titrant added"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "The equivalence-point is obtained as the intersection of linear parts of the conductance G, versus titrant volume V, curve (see"@en , - "The method can be used for deeply coloured or turbid solutions. Acid-base and precipita- tion reactions are most frequently used."@en , - "The method is based on replacing an ionic species of the analyte with another species, cor- responding to the titrant or the product with significantly different conductance."@en ; - skos:prefLabel "ConductometricTitration"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_eacb141f_6ab4_491f_8603_a3e025cefc82 :electrochemistry_eacb141f_6ab4_491f_8603_a3e025cefc82 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_1aec4cc0_82d5_4042_a657_ed7fe291c3d8 , @@ -6236,6 +6237,7 @@ of other configurations are used."""@en ; owl:someValuesFrom :electrochemistry_4a5660bd_1c1a_40e5_8a41_463c720d3903 ] ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a case that is described by its diameter and height"@en ; + rdfs:comment "often represented in cell designations by the letter R"@en ; skos:prefLabel "RoundCase"@en . @@ -6325,7 +6327,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ee0278fb_932d_48cd_a20a_c1b89b29d68b :electrochemistry_ee0278fb_932d_48cd_a20a_c1b89b29d68b rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba @@ -6399,7 +6402,8 @@ of other configurations are used."""@en ; ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f19d3b4f_d59b_4a92_a547_54a6f59cc9b4 :electrochemistry_f19d3b4f_d59b_4a92_a547_54a6f59cc9b4 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_0d2aaaf4_1a8a_4a32_abd8_7d0fdf0ae9d2 , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_cd17ca33_ae3d_4738_8930_547673bf6c1f @@ -6416,6 +6420,23 @@ of other configurations are used."""@en ; skos:prefLabel "BilayerMembrane"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2251de5_0a7d_4887_8bd1_c906db84abee +:electrochemistry_f2251de5_0a7d_4887_8bd1_c906db84abee rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 26 mm and height of 70 mm"@en ; + skos:altLabel "R26/70" ; + skos:prefLabel "R26700" . + + +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2c33088_224f_4fdb_857a_7cb62e3dddca +:electrochemistry_f2c33088_224f_4fdb_857a_7cb62e3dddca rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode which contains mostly materials based on carbon"@en ; + rdfs:comment "often represented in cell designations by the letter I"@en , + "this class is intended to enable designations based on IEC recommendations"@en ; + skos:prefLabel "CarbonBasedElectrode"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f2cf71c1_f2d7_4131_82e0_2701cdecea55 :electrochemistry_f2cf71c1_f2d7_4131_82e0_2701cdecea55 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_3979cd56_6256_414d_966c_7f723bf71e37 ; @@ -6497,6 +6518,14 @@ of other configurations are used."""@en ; ] . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f4a6a682_fd7c_43df_bed2_df70848d6026 +:electrochemistry_f4a6a682_fd7c_43df_bed2_df70848d6026 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_43cd6e14_dd43_41b5_b5b4_344d53841603 ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 27 mm, width of 148 mm, and height of 91 mm"@en ; + skos:altLabel "P27/148/91" ; + skos:prefLabel "P2714891" . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f54474fc_5d07_474b_97ae_f5d0349363b4 :electrochemistry_f54474fc_5d07_474b_97ae_f5d0349363b4 rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_95e4aa95_b7e9_40d7_b78e_4d7dcc31093d ; @@ -6512,6 +6541,14 @@ of other configurations are used."""@en ; skos:prefLabel "TrasattiBuzzancaModel"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f58476a9_f008_4502_ac94_2f1ebbce1fe3 +:electrochemistry_f58476a9_f008_4502_ac94_2f1ebbce1fe3 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 38 mm and height of 136 mm"@en ; + skos:altLabel "R38/136" ; + skos:prefLabel "R38136"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f591a444_89d6_4093_836d_7d53895edce4 :electrochemistry_f591a444_89d6_4093_836d_7d53895edce4 rdf:type owl:Class . @@ -6595,27 +6632,6 @@ of other configurations are used."""@en ; skos:prefLabel "SodiumChromiumOxideElectrode"@en . -### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f91c9ae3_42b8_4efa_9b67_a406d162d3b5 -:electrochemistry_f91c9ae3_42b8_4efa_9b67_a406d162d3b5 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_6e439f86_3d00_4b0b_82ab_1fa25241d4e9 , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_0bf1ed19_2fc9_4e6d_87ec_62015985a9a6 - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_269ddd97_1437_4545_b272_0df75a12c68a - ] , - [ rdf:type owl:Restriction ; - owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ; - owl:someValuesFrom :electrochemistry_85e39686_9658_4c74_bb91_a935704c174a - ] ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "direct coulometry at controlled potential in which the electric charge passed after the application of a potential step perturbation is measured as a function of time (Q-t curve)"@en ; - emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en ; - rdfs:comment "Chronocoulometry provides the same information that is provided by chronoamperometry, since it is based on the integration of the I-t curve. Nevertheless, chronocoulometry offers important experimental advantages, such as (i) the measured signal usually increases with time and hence the later parts of the transient can be detected more accurately, (ii) a better signal-to-noise ratio can be achieved, and (iii) other contributions to overall charge passed as a function of time can be discriminated from those due to the diffusion of electroactive substances."@en ; - skos:prefLabel "Chronocoulometry"@en . - - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_f9af8440_3629_4558_a944_9dfaf3dfd7ec :electrochemistry_f9af8440_3629_4558_a944_9dfaf3dfd7ec rdf:type owl:Class ; rdfs:subClassOf :electrochemistry_0a03ce7e_d79f_412e_a103_b5d74de9f4d7 ; @@ -6771,9 +6787,18 @@ of other configurations are used."""@en ; skos:prefLabel "R2320"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232 +:electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232 rdf:type owl:Class ; + rdfs:subClassOf :electrochemistry_b1cf9fee_2164_4f95_8204_90f717373a8a ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cylindrical case with a nominal diameter of 54 mm and height of 215 mm"@en ; + skos:altLabel "R54/215" ; + skos:prefLabel "R54215"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fd7caf39_0a43_4fbf_958e_a62067aa9007 :electrochemistry_fd7caf39_0a43_4fbf_958e_a62067aa9007 rdf:type owl:Class ; - rdfs:subClassOf :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , + rdfs:subClassOf :electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a , + :electrochemistry_e4b6cb36_4dac_49e3_871d_40bcfca943a5 , [ rdf:type owl:Restriction ; owl:onProperty :electrochemistry_860aa941_5ff9_4452_8a16_7856fad07bee ; owl:someValuesFrom chemsub:substance_4c62d334_a124_40b3_9fd1_fe713d01a6af