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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|el conc=0.1
|el conc=0.1
|scan rate=100
|scan rate=100
|gas=CO
|cond=420, 1 min
|cond=420, 1 min
|WE=glassy carbon
|WE=glassy carbon

Revision as of 16:00, 26 July 2023

analyte anl conc [mM] reduction potential oxidation potential solvent solvent vol [ml] electrolyte electrolyte purity el conc [M] int ref comp scan rate [mv s-1] scan number potential window scan dir gas T [° C] condition [nm] WE WE surface area [mm²] CE RE Details include

Molecule:100487

0.5

MeCN

TBA(PF6)

0.1


100 argon glassy carbon 7.07 platinum SCE Yes

Molecule:100487

0.5

MeCN

TBA(PF6)

0.1


100 CO dark glassy carbon 7.07 platinum SCE Yes

Molecule:100487

0.5

MeCN

TBA(PF6)

0.1


100 CO 420, 60 min glassy carbon 7.07 platinum SCE Yes

Molecule:100487

0.5

MeCN

TBA(PF6)

0.1


100 CO 420, 1 min glassy carbon 7.07 platinum SCE Yes

Molecule:100487

0.5

MeCN

TBA(PF6)

0.1


100 CO 420, 60 min glassy carbon 7.07 platinum SCE Yes