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酸性介质阻碍电化学CO还原中的串联催化反应途径。

Acidic Media Impedes Tandem Catalysis Reaction Pathways in Electrochemical CO Reduction.

作者信息

Ling Ning, Zhang Jiguang, Wang Meng, Wang Zhen, Mi Ziyu, Bin Dolmanan Surani, Zhang Mingsheng, Wang Bingqing, Ru Leow Wan, Zhang Jia, Lum Yanwei

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, 117585, Republic of Singapore.

Institute of Materials Research and Engineering, Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore, 138634, Republic of Singapore.

出版信息

Angew Chem Int Ed Engl. 2023 Sep 4;62(36):e202308782. doi: 10.1002/anie.202308782. Epub 2023 Jul 31.

Abstract

Electrochemical CO reduction (CO R) in acidic media with Cu-based catalysts tends to suffer from lowered selectivity towards multicarbon products. This could in principle be mitigated using tandem catalysis, whereby the *CO coverage on Cu is increased by introducing a CO generating catalyst (e.g. Ag) in close proximity. Although this has seen significant success in neutral/alkaline media, here we report that such a strategy becomes impeded in acidic electrolyte. This was investigated through the co-reduction of CO / CO mixtures using a series of Cu and CuAg catalysts. These experiments provide strong evidence for the occurrence of tandem catalysis in neutral media and its curtailment under acidic conditions. Density functional theory simulations suggest that the presence of H O weakens the *CO binding energy of Cu, preventing effective utilization of tandem-supplied CO. Our findings also provide other unanticipated insights into the tandem catalysis reaction pathway and important design considerations for effective CO R in acidic media.

摘要

在酸性介质中使用铜基催化剂进行电化学一氧化碳还原(CO R)时,对多碳产物的选择性往往会降低。原则上,可通过串联催化来缓解这一问题,即通过在附近引入一氧化碳生成催化剂(如银)来增加铜上的CO覆盖率。尽管这在中性/碱性介质中已取得显著成功,但我们在此报告,这种策略在酸性电解质中会受到阻碍。通过使用一系列铜和铜银催化剂对CO/CO混合物进行共还原对此进行了研究。这些实验为中性介质中串联催化的发生及其在酸性条件下的抑制提供了有力证据。密度泛函理论模拟表明,H O的存在削弱了铜的CO结合能,从而阻止了对串联供应的CO的有效利用。我们的研究结果还为串联催化反应途径提供了其他意想不到的见解,以及在酸性介质中有效进行CO R的重要设计考虑因素。

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