电合成
选择性
粘结长度
催化作用
化学
材料科学
无机化学
分子
物理化学
有机化学
电化学
电极
作者
Yunze Xu,Yu Zhang,Hongyan Zhao,Lei Shi,Zhenbao Zhang,Xueyan Li,Zhen Xue,Heqing Jiang,Yongfa Zhu,Jiawei Zhu
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-04-07
卷期号:64 (24): e202503745-e202503745
被引量:16
标识
DOI:10.1002/anie.202503745
摘要
Abstract Precisely controlling the nature of Cu─O bond in Cu‐based oxide catalysts and understanding its correlation with CH 4 electrosynthesis (from CO 2 ) for selectivity optimization is a long‐standing challenge. Herein, taking a specific type of cuprates structured with CuO 4 square‐planar motifs as the platform, we report a selectivity descriptor of Cu─O bond length for screening highly selective catalysts toward CH 4 electrosynthesis. We establish the descriptor by systematic investigations of several proof‐of‐concept cuprates. Their Cu─O bond lengths are precisely controlled ranging from 1.944 to 1.970 Å and these bonds remain stable in CH 4 selectivity evaluation. Our investigations demonstrate that the CH 4 selectivity exhibits a volcano‐type dependence on the Cu─O bond length, and the optimized value is accessible at about 1.951 Å. This could be attributed to the optimal (neither too strong nor too weak) *CO adsorption created by the moderate Cu─O bond length, facilitating *CO hydrogenation. Furthermore, utilizing this descriptor, we predict three highly selective cuprates for CH 4 electrosynthesis, with superior selectivity that is near the top of the volcano plot. And importantly, in an acidic electrolyte (pH = 1), they outperform the reported catalysts, achieving CH 4 selectivity of up to 61.7% at 300 mA cm −2 .
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