Electrochemistry Application — CO2 Reduction to Methane and Ethylene on a Single-Atom Catalyst: A Grand Canonical Quantum Mechanics Study

Measurement evidence

Electrochemistry Application

CO2 Reduction to Methane and Ethylene on a Single-Atom Catalyst: A Grand Canonical Quantum Mechanics Study · Osella S., Goddard III W.A. · Journal of the American Chemical Society · 2023 · 21319-21329

1 measurement group · 3 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

Prior experimental CO2RR performance cited/adapted from ref. 22 and Table S7; not first-hand in this paper.

Literature PcCu-Cu-O CO2RR electrode context · Electrode

0.1 M KHCO3, -1.2 V vs RHE for PcCu-Cu-O literature row.

Atmosphere
CO2RR electrolyte context; details from cited prior work only.
Geometry
Electrode; details not specified in this paper.
Context
Literature PcCu-Cu-O framework electrode context.
Measurement source
SI p.S17 · Supporting Information · Table S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Literature PcCu-Cu-O C2H4 faradaic efficiencyC2H4 (50)SI Table
Rounded Reported
SI p.S17 · Supporting Information · Table S7
Literature PcCu-Cu-O partial current density7.3 mA cm-2SI Table
Exact Reported
SI p.S17 · Supporting Information · Table S7
Literature PcCu-Cu-O CO2RR stability time4 hSI Table
Exact Reported
SI p.S17 · Supporting Information · Table S7