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Tuning the catalytic selectivity in electrochemical CO2 reduction on copper oxide-derived nanomaterials 被引量:1

Tuning the catalytic selectivity in electrochemical CO2 reduction on copper oxide-derived nanomaterials
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摘要 Electrochemical conversion of CO2 to hydrocarbons can relieve both environmental and energy stresses. However, electrocatalysts for this reaction usually suffer from a poor product selectivity and a large overpotential. Here we report that tunable catalytic selectivity for hydrocarbon formation could be achieved on Cu nanomaterials with different morphologies. By tuning the electrochemical parameters, either Cu oxide nanowires or nanoneedles were fabricated and then electrochemically reduced to the corresponding Cu nanomaterials. The Cu nanowires preferred the formation of C2H4, while the Cu nanoneedles favored the production of more CH4, rather than C2H4. Our work provides a facile synthetic strategy for preparing Cu-based nanomaterials to achieve selective CO2 reduction. Electrochemical conversion of CO2 to hydrocarbons can relieve both environmental and energy stresses. However, electrocatalysts for this reaction usually suffer from a poor product selectivity and a large overpotential. Here we report that tunable catalytic selectivity for hydrocarbon formation could be achieved on Cu nanomaterials with different morphologies. By tuning the electrochemical parameters, either Cu oxide nanowires or nanoneedles were fabricated and then electrochemically reduced to the corresponding Cu nanomaterials. The Cu nanowires preferred the formation of C2H4, while the Cu nanoneedles favored the production of more CH4, rather than C2H4. Our work provides a facile synthetic strategy for preparing Cu-based nanomaterials to achieve selective CO2 reduction.
出处 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2015年第5期861-866,共6页 环境科学与工程前沿(英文)
关键词 electrochemical CO2 reduction Cu oxide nanostructure SELECTIVITY hydrocarbon formation electrochemical CO2 reduction, Cu oxide,nanostructure, selectivity, hydrocarbon formation
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