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Switching Reaction Pathways of CO2 Electroreduction by Modulating Cations in the Electrochemical Double Layer.
Yang, Jiahao; Jiao, Jiapeng; Liu, Shiqiang; Yin, Yaoyu; Cheng, Yingying; Wang, Yiyong; Zhou, Meng; Zhao, Wenling; Tong, Xing; Jing, Lihong; Zhang, Pei; Sun, Xiaofu; Zhu, Qinggong; Kang, Xinchen; Han, Buxing.
Afiliación
  • Yang J; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Jiao J; East China Normal University, School of Chemistry and Molecular Engineering, CHINA.
  • Liu S; Institute of Chemistry Chinese Academy of Sciences, Department: Institute of chemistry, CHINA.
  • Yin Y; Institute of Chemistry Chinese Academy of Sciences, Department: Institute of chemistry, CHINA.
  • Cheng Y; Institute of Chemistry Chinese Academy of Sciences, Department: Institute of chemistry, CHINA.
  • Wang Y; Institute of Chemistry Chinese Academy of Sciences, Department: Institute of chemistry, CHINA.
  • Zhou M; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Zhao W; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Tong X; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Jing L; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Zhang P; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Sun X; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Zhu Q; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Kang X; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, CHINA.
  • Han B; Institute of Chemistry Chinese Academy of Sciences, Institute of chemistry, Beiyijie number 2, Zhongguancun, 100190, Beijing, CHINA.
Angew Chem Int Ed Engl ; : e202410145, 2024 Jul 09.
Article en En | MEDLINE | ID: mdl-38979674
ABSTRACT
Tuning the selectivity of CO2 electroreduction reaction (CO2RR) solely by changing electrolyte is a very attractive topic. In this study, we conducted CO2RR in different aqueous electrolytes over bulk metal electrodes. It was discovered that controlled CO2RR could be achieved by modulating cations in the electrochemical double layer. Specifically, ionic liquid cations in the electrolyte significantly inhibits the hydrogen evolution reaction (HER), while yielding high Faraday efficiencies toward CO (FECO) or formate (FEformate) depending on the alkali metal cations. For example, the product could be switched from CO (FECO = 97.3%) to formate (FEformate = 93.5%) by changing the electrolyte from 0.1 M KBr-0.5 M 1-octyl-3-methylimidazolium bromide (OmimBr) to 0.1 M CsBr-0.5M OmimBr aqueous solutions over pristine Cu foil electrode. In situ spectroscopy and theoretical calculations reveal that the ordered structure generated by the assembly of Omim+ under an applied negative potential alters the hydrogen bonding structure of the interfacial water, thereby inhibiting the HER. The difference in selectivity in the presence of different cations is attributed to the hydrogen bonding effect caused by Omim+, which alters the solvated structure of the alkali metal cations and thus affects the stabilization of intermediates of different pathways.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Angew Chem Int Ed Engl Año: 2024 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Angew Chem Int Ed Engl Año: 2024 Tipo del documento: Article País de afiliación: China