4.6 Article

Metal ion cycling of Cu foil for selective C-C coupling in electrochemical CO2 reduction

Journal

NATURE CATALYSIS
Volume 1, Issue 2, Pages 111-119

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41929-017-0009-x

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Funding

  1. Rowland Fellows Program at Rowland Institute, Harvard University
  2. National Science Foundation under NSF [ECS-0335765]
  3. Office of Science of the US Department of Energy [DE-SC0004993, DE-AC02-05CH11231]

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Electrocatalytic CO2 reduction to higher-value hydrocarbons beyond C-1 products is desirable for applications in energy storage, transportation and the chemical industry. Cu catalysts have shown the potential to catalyse C-C coupling for C2+ products, but still suffer from low selectivity in water. Here, we use density functional theory to determine the energetics of the initial C-C coupling steps on different Cu facets in CO2 reduction, and suggest that the Cu(100) and stepped (211) facets favour C2+ product formation over Cu(111). To demonstrate this, we report the tuning of facet exposure on Cu foil through the metal ion battery cycling method. Compared with the polished Cu foil, our 100-cycled Cu nanocube catalyst with exposed (100) facets presents a sixfold improvement in C2+ to C-1 product ratio, with a highest C2+ Faradaic efficiency of over 60% and H-2 below 20%, and a corresponding C2+ current of more than 40 mA cm(-2).

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