Test EC Inv/test1: Difference between revisions

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Assay, EC conversion of CO2 experiments, EC conversion of CO2 overview experiments
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|experiment_type=experimental
|experiment_type=experimental
|catalyst=Molecule:100528
|catalyst=Molecule:100528
|cat conc=23
|cat conc=23 mM
|cat fixation=immo tech
|cat fixation=immo tech
|cat carrier=carr mat
|cat carrier=carr mat
|cell type=cell type
|cell type=cell type
|separator=sep
|separator=sep
|working electrode=gold
|counter electrode=platinum
|reference electrode=SHE
|solvent_A__WE=water a we
|solvent_A__WE=water a we
|solvent_A__CE=water a ce
|solvent_A__CE=water a ce
Line 27: Line 30:
|supporting_electrolyte__CE=support el ce
|supporting_electrolyte__CE=support el ce
|supporting_electrolyte_concentration__CE=43
|supporting_electrolyte_concentration__CE=43
|pH=3
|current density=4
|current density=4
|cathodic potential=6
|cathodic potential=6

Latest revision as of 16:07, 9 January 2026


experiment type catalyst cat conc [µM] immobilization technique catalyst carrier material cell type separator working electrode (WE) counter electrode (CE) reference electrode (WE) solvent A (WE) solvent B (WE) solvent C (WE) solvent ratio (WE) additives (WE) additives concentration (WE) [M] buffer (WE) buffer concentration (WE) [M] supporting electrolyte (WE) supporting_electrolyte concentration (WE) [M] solvent A (CE) solvent B (CE) solvent C (CE) solvent ratio (CE) additives (CE) additives concentration (CE) [M] buffer (CE) buffer concentration (CE) [M] supporting electrolyte (CE) supporting_electrolyte concentration (CE) [M] pH current density [mA/cm²] Cathodic potential vs RHE [V] faradaic amount [F] electrolysis duration [h] limiting turnover number CO [Hz] limiting turnover number HCOOH [Hz] limiting turnover number H2C2O4 [Hz] limiting turnover number H2CO [Hz] limiting turnover number CH3OH [Hz] limiting turnover number H2 [Hz] limiting turnover number CH4 [Hz] limiting turnover number C2H4 [Hz] limiting turnover number CH3CH2OH [Hz] maximum turnover frequency CO [Hz] maximum turnover frequency HCOOH [Hz] maximum turnover frequency H2C2O4 [Hz] maximum turnover frequency H2CO [Hz] maximum turnover frequency CH3OH [Hz] maximum turnover frequency H2 [Hz] maximum turnover frequency CH4 [Hz] maximum turnover frequency C2H4 [Hz] maximum turnover frequency CH3CH2OH [Hz] turnover frequency at zero overpotential CO [Hz] turnover frequency at zero overpotential HCOOH [Hz] turnover frequency at zero overpotential H2C2O4 [Hz] turnover frequency at zero overpotential H2CO [Hz] turnover frequency at zero overpotential CH3OH [Hz] turnover frequency at zero overpotential H2 [Hz] turnover frequency at zero overpotential CH4 [Hz] turnover frequency at zero overpotential C2H4 [Hz] turnover frequency at zero overpotential CH3CH2OH [Hz] faradaic efficiency CO [%] faradaic efficiency HCOOH [%] faradaic efficiency H2C2O4 [%] faradaic efficiency H2CO [%] faradaic efficiency CH3OH [%] faradaic efficiency H2 [%] faradaic efficiency CH4 [%] faradaic efficiency C2H4 [%] faradaic efficiency CH3CH2OH [%] selectivity [%] [CO;HCOOH;H2C2O4;H2CO;CH3OH;H2;CH4;C2H4;CH3CH2OH] total faradaic efficiency [%] Details include
experimental

MeOH

23 mM immo tech carr mat cell type sep gold platinum SHE

water a we



Ar 32 buffer we 21 support el we 31

water a ce



Argon atmosphere 34 buffer ce 53 support el ce 43 3 4 6 5 7 23 2 5 7 9 9 4 4 6 3 5 6 7 8 4 4 2 4 3 4 6 8 0 6 3 5 7 1 1 2 3 4 5 6 7 8 0%; 33.3%; 2.9%; 7.2%; 10.1%; 13.0%; 13.0%; 5.8%; 5.8%; 8.7%

37

details 1 Yes