Toward Visible-Light Photochemical CO2‑to-CH4 Conversion in Aqueous Solutions Using Sensitized Molecular Catalysis/Cyclic voltammetry in various conditions: Difference between revisions
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< Toward Visible-Light Photochemical CO2‑to-CH4 Conversion in Aqueous Solutions Using Sensitized Molecular Catalysis
investigation
Assay, Cyclic Voltammetry experiments

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|anl=Molecule:100784 | |anl=Molecule:100784 | ||
|anl conc=0.5 | |anl conc=0.5 | ||
|redox potential=-2.0 ; | |||
|solv=Molecule:100530 | |solv=Molecule:100530 | ||
|electrolyte=Molecule:100966 | |electrolyte=Molecule:100966 |
Revision as of 15:36, 5 September 2024
analyte | anl conc [mM] | E0,0 [V] | E0,0 type | E1,2 [V] | *Ered [V] | *Eox [V] | *Redox type | Ered1 [V] | Eox1 [V] | Ered2 [V] | Eox2 [V] | Ered3 [V] | Eox3 [V] | solvent | solvent vol [ml] | electrolyte | electrolyte purity | el conc [M] | int ref comp | scan rate [mV/s] | scan number | potential window | scan dir | gas | T [°C] | condition [nm] | WE | WE SA [mm²] | CE | RE | Details | include |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
0.5 | 0 | -2, -1.4; |
0 |
0 |
0 |
0 |
0 |
0 |
0.1 |
|
100 | argon | glassy carbon | 7.07 | platinum | SCE | Yes | |||||||||||||||
0.5 | 0 | -2, -1.4; |
0 |
0 |
0 |
0 |
0 |
0 |
0.1 |
|
100 | CO | dark | glassy carbon | 7.07 | platinum | SCE | Yes | ||||||||||||||
0.5 | 0 | -2, -1.4; |
0 |
0 |
0 |
0 |
0 |
0 |
0.1 |
|
100 | CO | irr. >420, 60 min | glassy carbon | 7.07 | platinum | SCE | Yes | ||||||||||||||
0.5 | 0 | -2, -1.4; |
0 |
0 |
0 |
0 |
0 |
0 |
0.1 |
|
100 | CO | TEA (0.05 mM), irr. >420 nm, 1 min | glassy carbon | 7.07 | platinum | SCE | Yes | ||||||||||||||
0.5 | 0 | -2; |
0 |
0 |
0 |
0 |
0 |
0 |
0.1 |
|
100 | CO | TEA (0.05 mM), irr. >420 nm, 60 min | glassy carbon | 7.07 | platinum | SCE | Yes |
The results show an increase in current when the solution is irradiated and triethylamine (TEA) is added (see condition column).