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A Sn-stabilized Cuδ+ electrocatalyst toward highly selective CO2-to-CO in a wide potential range

  • Xingxing Tan
  • , Weiwei Guo
  • , Shoujie Liu
  • , Shunhan Jia
  • , Liang Xu
  • , Jiaqi Feng
  • , Xupeng Yan
  • , Chunjun Chen
  • , Qinggong Zhu
  • , Xiaofu Sun*
  • , Buxing Han*
  • *此作品的通讯作者
  • CAS - Institute of Chemistry
  • University of Chinese Academy of Sciences
  • Qingdao University
  • Chemistry and Chemical Engineering of Guangdong Laboratory
  • East China Normal University

科研成果: 期刊稿件文章同行评审

摘要

Current techno-economic evaluation manifests that the electrochemical CO2 reduction reaction (eCO2RR) to CO is very promising considering its simple two-electron transfer process, minimum cost of electricity, and low separation cost. Herein, we report a Sn-modification strategy that can tune the local electronic structure of Cu with an appropriate valence. The as-prepared catalysts can alter the broad product distribution of Cu-based eCO2RR to predominantly generate CO. CO faradaic efficiency (FE) remained above 96% in the wide potential range of −0.5 to −0.9 V vs. the reversible hydrogen electrode (RHE) with CO partial current density up to 265 mA cm−2. The catalyst also had remarkable stability. Operando experiments and density functional theory calculations demonstrated that the surface Cuδ+ sites could be modulated and stabilized after introducing Sn. The Cuδ+ sites with low positive valence were conducive to regulating the binding energy of intermediates and resulted in high CO selectivity and maintained the stability of the catalyst. Additionally, scaling up the catalyst into a membrane electrode assemble system (MEA) could achieve a high overall current of 1.3 A with exclusive and stable CO generation.

源语言英语
页(从-至)11918-11925
页数8
期刊Chemical Science
13
40
DOI
出版状态已出版 - 26 9月 2022
已对外发布

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