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Updated: Apr 15, 2026

Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction
Published on: April 10, 2018
Cascade C─C/C─N Bonding for Acetamide Synthesis from Electrocatalytic CO2 and Nitrate Coupling on CuCo Diatomic Sites
Shaohan Xu1, Chao Miao1, Jingui Zheng1
1School of Chemical Science and Engineering, Department of Thoracic Surgery, Shanghai Tongji Hospital, School of Medicine, Tongji University, Shanghai, P. R. China.
Abstract:
Electrocatalytic CO2 coupling with nitrate to synthesize acetamide provides a promising way for the co-valorization of greenhouse gas and environmental pollutants. Aiming at generating acetamide via C─C─N bonding, a N-coordinated copper-cobalt diatomic catalytic sites is constructed to achieve CO2 reduction to ketene intermediate and NO3 - to ammonia, thereby facilitating the nucleophilic attack of *NH2 on *CH2CO to form acetamide. Based on the enhanced mass transfer of CO2 in flow cell, an acetamide yield of 67.7 mg L-1 and a FE of 15.1% are achieved over CuCo diatomic sites. In situ FT-IR, Raman spectroscopy, in situ XAFS combined with DFT suggest that CuCo diatomic pairs induce CO2 and NO3 - to stabilize on the catalytic surface via a favorable bridge adsorption configuration. And the electronic structure optimization promoted by interatomic electron interactions reduces the energy barriers for C─C and C─N bonding. This work achieves C─C─N bonding with ordered C─C and C─N coupling via diatomic sites, providing a novel strategy for the sustainable synthesis of acetamide.
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