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Title: Tailoring Cu-based nanoalloys for highly selective electrochemical urea synthesis from C0₂ and nitrate
Authors: Zhang, H 
Liu, J 
Xu, Z 
Bu, Y 
Wu, TS
Tu, WM
Soo, YL
Lin, C 
Zhu, Y 
Lei, Q
Yin, J 
Lo, TWB 
Issue Date: 6-Jun-2025
Source: ACS catalysis, 6 June 2025, v. 15, no. 11, p. 8966-8978
Abstract: The current carbon and nitrogen cycles, as driven by human activity, are characterized by high energy consumption, especially in the context of excessive CO2 emissions. To establish a commercially viable electrochemical coupling of nitrate and CO2 for urea production, developing a highly selective catalyst is crucial. In this study, we synthesized a series of ultrafine Cu-M (M = Bi, In, and Pb) nanoalloy catalysts using electrodeposition. We employed a phenanthroline-mediated approach to carefully control the dopant composition and nanoalloy size by regulating the electrodeposition kinetics. Our ultrafine Cu–Bi0.1 catalyst achieved a significantly enhanced Faradaic efficiency for urea production of 89.4% at −1.0 V vs RHE, compared to 41.5% for the Cu control. Operando Raman and Fourier-transform infrared spectroscopy provided compelling evidence supporting our catalytic findings. The remarkable selectivity to urea observed with our Cu–Bi0.1 catalyst originates from the stabilization of *CO and *NO2 intermediates. Through extensive theoretical calculations, we found that the presence of Bi in the Cu domain enhances urea formation both thermodynamically and kinetically. This work presents a promising chemical protocol for designing next-generation nanoalloy catalytic materials with enhanced properties.
Keywords: Carbon dioxide reduction
Cu−Bi alloy
C−N coupling
Electrocatalysis
Nitrate reduction
Urea
Publisher: American Chemical Society
Journal: ACS catalysis 
EISSN: 2155-5435
DOI: 10.1021/acscatal.5c01960
Rights: © 2025 The Authors. Published by American Chemical Society
This article is licensed under CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/)
The following publication Zhang, H., Liu, J., Xu, Z., Bu, Y., Wu, T. S., Tu, W. M., ... & Lo, T. W. B. (2025). Tailoring Cu-Based Nanoalloys for Highly Selective Electrochemical Urea Synthesis from CO2 and Nitrate. ACS Catalysis, 15(11), 8966-8978 is available at https://doi.org/10.1021/acscatal.5c01960.
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