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Atypical Oxygen-Bearing Copper Boosts Ethylene Selectivity toward Electrocatalytic CO 2 Reduction

作者:Wei Zhang, Chuqiang Huang, Qin Xiao, Luo Yu, Ling Shuai, Pengfei An, Jing Zhang, Ming Qiu, Zhifeng Ren, Ying Yu · 发表于:Journal of the American Chemical Society · 年份:2020 · DOI:10.1021/jacs.0c01562 · 被引用次数:420 · 研究领域:CO2 Reduction Techniques and Catalysts、Electrocatalysts for Energy Conversion、Ionic liquids properties and applications

Oxygen-bearing copper (OBC) has been widely studied for enabling the C–C coupling of the electrocatalytic CO 2 reduction reaction (CO 2 RR) since this is a distinctive hallmark of strongly correlated OBC systems and may benefit many other Cu-based catalytic processes. Unresolved problems, however, include the instability of and limited knowledge regarding OBC under realistic operating conditions, raising doubts about its role in CO 2 RR. Here, an atypical and stable OBC catalyst with a hierarchical pore and nanograin-boundary structure was constructed and was found to exhibit efficient CO 2 RR for the production of ethylene with a Faradaic efficiency of 45% at a partial current density of 44.7 mA cm –2 in neutral media, and the ethylene partial current density is nearly 26 and 116 times that of oxygen-free copper (OFC) and commercial Cu foam, respectively. More importantly, the structure–activity relationship in CO 2 RR was explored through a comprehensive analysis of experimental data and computational techniques, thus increasing the fundamental understanding of CO 2 RR. A systematic characterization analysis suggests that atypical OBC (Cu 4 O) was formed and that it is stable even at −1.00 V [(vs the reversible hydrogen electrode (RHE)]. Density functional theory calculations show that the atypical OBC enables control over CO adsorption and dimerization, making it possible to implement a preference for the electrosynthesis of ethylene (C 2 ) products. These results provide ...