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Updated: May 13, 2026

Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction
Published on: April 10, 2018
In situ construction of a built-in electric field for efficient CO2 electroreduction
Zikang Qiao1, Xiang Han1, Tingjie Mao1
1Wenzhou Key Lab of Advanced Energy Storage and Conversion, Zhejiang Province Key Lab of Leather Engineering, College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou, Zhejiang 325035, China. juanwang@wzu.edu.cn.
Abstract:
Studying the structural evolution process of Cu-based heterogeneous catalysts is of great significance for converting CO2 into valuable chemicals. In this study, we suggest an efficient synthesis method for Cu-based catalysts that facilitate the formation of heterojunctions with In2O3, providing a mild and effective route for CO2 and H2O reduction. The resulting syngas ratios (CO/H2) are maintained within a narrow range of 0.6 to 1.5 across a broad potential window. Experiments and theoretical calculations demonstrate that the in situ reconstructed internal electric field significantly lowers the energy barrier for CO2 reduction, favoring the formation of *CO intermediates while concurrently suppressing the hydrogen evolution reaction (HER) during the electrochemical CO2 reduction process.
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