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Atomic Printing Strategy Achieves Precise Anchoring of Dual-Copper Atoms on C2N Structure for Efficient CO2 Reduction to Ethylene
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2024-09-09 , DOI: 10.1002/anie.202405778
Zhiyi Sun 1 , Xuan Luo 2 , Huishan Shang 3 , Ziding Wang 2 , Liang Zhang 2 , Wenxing Chen 4
Affiliation  

We successfully develop a universal atomic imprinting synthesis strategy for the preparation of dual-atom catalysts, with a particular focus on the synthesis of a dual-atom Cu catalyst for the electrochemical CO2 reduction to ethylene. The dual-atom copper catalyst developed in this research exhibits impressive electrocatalytic performance, achieving a remarkable 71.7 % ethylene Faradaic efficiency at an applied potential of −1.1 V vs RHE.

中文翻译:


原子打印策略实现了双铜原子在 C2N 结构上的精确锚定,从而有效地将 CO2 还原为乙烯



我们成功开发了一种用于制备双原子催化剂的通用原子印记合成策略,特别关注用于电化学 CO2 还原为乙烯的双原子 Cu 催化剂的合成。本研究开发的双原子铜催化剂表现出令人印象深刻的电催化性能,在 -1.1 V vs RHE 的电位下实现了 71.7% 的乙烯法拉第效率。
更新日期:2024-09-09
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