Unconventional Inverse Size‐Effects Enable Efficient C–N Coupling on Copper Electrocatalysts
Abstract
Abstract Exposed coordinatively unsaturated sites (CUS) with the reducing geometrical sizes of catalysts commonly offers significant advantages in heterogeneous electrocatalytic processes. However, this empirical rule might be unsuitable for the innovative electrocatalytic C–N coupling reaction, as one of the parallel reactions. In this study, we observe an inverse size‐effect in the electrocatalytic synthesis of benzaldehyde oximes (BAO) from nitrates and benzaldehyde. Cu nanocatalysts with more exposed CUS thermodynamically favor the over‐reduction of coupling intermediates, i.e., adsrobed hydroxylamine (*NH 2 OH) and benzaldehyde (*Ph‐CHO), leading to a low BAO yield. Notably, Cu foil with few CUS enables the enrichment of *NH 2 OH and *Ph‐CHO, achieving a BAO yield of 91%. Moreover, this electrosynthesis strategy on Cu foil demonstrates versatility and broad applicability for producing various oximes. This work highlights the significant potential of inverse size effects in guiding the design of catalysts for electrocatalytic C–N coupling reactions.
Article Details
Authors (13)
Yandong Wu
Jiawang Chen
Ta Thi Thuy Nga
Research Center for X-ray Science & Department of Physics
Yanzhi Xu
Mengyi Qiu
Dongdong Wang
Ruiqi Wang
Chao Xie
Wenjie Wu
Qinghua Liu
National Synchrotron Radiation Laboratory
Chung‐Li Dong
Department of Physics Tamkang University New Taipei City Taiwan
Shuangyin Wang
State Key Laboratory of Chem/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering
Yuqin Zou
State Key Laboratory of Chem/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering