Chinese Journal of Catalysis ›› 2026, Vol. 84: 159-174.DOI: 10.1016/S1872-2067(26)64981-9

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High-entropy alloy FeCoNiCuPt with donor-bridge effect for enhancing urea electrosynthesis from CO2 and nitrate

Wei Guoa, Zhenlin Moa, Laiji Xua, Yu Zhanga, Minghui Yangb, Baojun Liua()   

  1. a College of Resources and Environmental Engineering, Guizhou University, Guiyang 550025, Guizhou, China
    b School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, Liaoning, China
  • Received:2025-09-06 Accepted:2025-11-14 Online:2026-05-18 Published:2026-04-16
  • Contact: *E-mail: jbliu@gzu.edu.cn (B. Liu).
  • Supported by:
    Key Project of the National Ministry of Science and Technology(2022YFC3705003)

Abstract:

Electrocatalytic co-reduction of nitrate (NO3-) and carbon dioxide (CO2) offers a promising route for sustainable urea synthesis, yet the process remains limited by the complexity of intermediate species and poorly understood C-N coupling mechanisms. Herein, we report a high-entropy alloy (HEA) FeCoNiCuPt catalyst that enables efficient and selective urea production through donor-bridge-acceptor interactions. Benefiting from the atomic-level disorder of the HEA, the catalyst provides a diverse array of active sites capable of accommodating the distinct adsorption and activation pathways of NO3- and CO₂ intermediates. At -0.7 V vs. RHE, the FeCoNiCuPt catalyst achieves a urea yield of 49.26 mmol h-1 gcat-1 and a Faradaic efficiency of 25.51%, outperforming most reported systems. Mechanistic studies show that Pt sites act as electron donors, while neighboring transition metal atoms serve as electron bridges, enhancing electron transfer toward critical *NO2 and *CO2 species. This donor-bridge facilitates C-N coupling and promotes efficient urea formation, offering new insights into catalyst design for tandem small-molecule electrosynthesis.

Key words: Electron donor-bridge effect, High-entropy alloy, Urea electrosynthesis, D-band center, CO2 reduction