4.7 Article

Key to C2 production: selective C-C coupling for electrochemical CO2 reduction on copper alloy surfaces

期刊

CHEMICAL COMMUNICATIONS
卷 57, 期 75, 页码 9526-9529

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1cc03796j

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资金

  1. Australian Research Council [DP190103472, FT190100636, FL170100154]
  2. Australian Government
  3. Phoenix High Performance Computing (HPC) Service at The University of Adelaide
  4. Australian Research Council [FT190100636] Funding Source: Australian Research Council

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The C-C coupling kinetics on Cu alloys with Pt, Pd, or Au surface sites show variations, with OC-COH coupling being more favorable than OC-CHO coupling due to increased reactivity of adsorbed *CO species. Linear energy relations for C-C association/dissociation could simplify the energetic evaluation for C-2 production.
The C-C coupling kinetic variations are observed on Cu alloys with Pt, Pd, or Au surface sites. The OC-COH coupling is kinetically more favorable than OC-CHO coupling, which originates from increased reactivity of adsorbed *CO species. Linear energy relations for C-C association/dissociation could simplify the energetic evaluation for C-2 production.

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