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Atomic Design of Copper Active Sites in Pristine Metal-Organic Coordination Compounds for Electrocatalytic Carbon Dioxide Reduction.
Wang, Juan; Wa, Qingbo; Diao, Qi; Liu, Fu; Hao, Fengkun; Xiong, Yuecheng; Wang, Yunhao; Zhou, Jingwen; Meng, Xiang; Guo, Liang; Fan, Zhanxi.
Affiliation
  • Wang J; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Wa Q; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Diao Q; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Liu F; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Hao F; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Xiong Y; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Wang Y; Hong Kong Branch of National Precious Metals Material Engineering Research Center (NPMM), City University of Hong Kong, Hong Kong, 999077, China.
  • Zhou J; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Meng X; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
  • Guo L; Hong Kong Branch of National Precious Metals Material Engineering Research Center (NPMM), City University of Hong Kong, Hong Kong, 999077, China.
  • Fan Z; Department of Chemistry, City University of Hong Kong, Hong Kong, 999077, China.
Small Methods ; : e2400432, 2024 May 20.
Article de En | MEDLINE | ID: mdl-38767183
ABSTRACT
Electrocatalytic carbon dioxide reduction reaction (CO2RR) has emerged as a promising and sustainable approach to cut carbon emissions by converting greenhouse gas CO2 to value-added chemicals and fuels. Metal-organic coordination compounds, especially the copper (Cu)-based coordination compounds, which feature well-defined crystalline structures and designable metal active sites, have attracted much research attention in electrocatalytic CO2RR. Herein, the recent advances of electrochemical CO2RR on pristine Cu-based coordination compounds with different types of Cu active sites are reviewed. First, the general reaction pathways of electrocatalytic CO2RR on Cu-based coordination compounds are briefly introduced. Then the highly efficient conversion of CO2 on various kinds of Cu active sites (e.g., single-Cu site, dimeric-Cu site, multi-Cu site, and heterometallic site) is systematically discussed, along with the corresponding catalytic reaction mechanisms. Finally, some existing challenges and potential opportunities for this research direction are provided to guide the rational design of metal-organic coordination compounds for their practical application in electrochemical CO2RR.
Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Small Methods / Small methods Année: 2024 Type de document: Article Pays d'affiliation: Chine Pays de publication: Allemagne

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Small Methods / Small methods Année: 2024 Type de document: Article Pays d'affiliation: Chine Pays de publication: Allemagne