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Molecule Engineering on Copper-Based Electrocatalyst Toward Electrocatalytic C─N Coupling for Urea Synthesis

delete2025-09-11
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PRE
AI
M
Mingyu Chen
X
Xiaorong Zhu
X
Xupeng Qin
郭楠楠 cover
郭楠楠 (Nannan Guo)
王鲁香 cover
王鲁香 (Luxiang Wang)
H
Haixin Sun
Q
Qinghua Liu
陈晨 (Chen Chen) *
王双印 (Shuangyin Wang) *
DOI:10.1002/adfm.202516741delete
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Abstract

Abstract

En 中文
Electrocatalytic C─N coupling is an emerging process that enables the efficient conversion of CO2 and nitrogenous species (e.g., NOx) into high-value products such as urea. Among electrocatalysts, copper (Cu) exhibits promising activity under reduction conditions. However, Cu-based catalysts often undergo reconstruction during operation, leading to a broad product distribution and poor selectivity toward specific target molecules. Herein, a molecular engineering strategy to enhance the structural stability of Cu-based catalysts during electrocatalytic C─N coupling is employed. The optimized catalyst achieves a remarkable urea Faradic efficiency (FE) of 25.2%, significantly outperforming pristine Cu, which predominantly generates ammonia (NH3). In situ Raman spectroscopy reveals that hydroxyl groups in tannic acid stabilize Cuδ+ species, forming a Cuδ+/Cu0 interface under reaction conditions. This interface serves as an active site, facilitating C─N coupling between *CO and *NO intermediates. Density functional theory (DFT) calculations further demonstrate that the Cuδ+/Cu0 interface exhibits a lower energy barrier for C─N coupling both thermodynamically and kinetically-compared to pristine Cu. This work mitigates uncontrolled catalyst reconstruction during reduction by modulating the electronic structure of Cu through molecular engineering, paving the way for highly selective electrocatalytic urea synthesis.
Keywords:
C─N coupling
copper
electrocatalysis
molecule engineering

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

X
Xinjiang University
Scholars:
1.4W
Papers: 8.7K
Citations: 1.1W
H
hunan university
Scholars:
4.4W
Papers: 3.3W
Citations: 70
U
university of science and technology of china
Scholars:
1.0W
Papers: 3.9K
Citations: 3
N
Nantong University
Scholars:
1.9W
Papers: 1.1W
Citations: 2.0W
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