Tong Liu, Boran Yang, Keqi Li, Xueping Liu, Hongli Wang, Zhankui Zhao
Electrocatalytic nitrate reduction reaction (NO 3 RR) represents a dual-function route for sustainable ammonia synthesis and wastewater treatment. Yet, the practical application of this process is currently hindered by unsatisfactory electrocatalytic activity and long-term stability. Herein, Co 60 Cu 12 Si 18 B 10 nanocrystalline alloy with a unique Cu-CoSiB dual nanocrystalline structure was fabricated through nonequilibrium solidification technology. The addition of Si and B not only promotes geometric structural refinement but also modulates the electronic structure of the active sites. The resultant Co 60 Cu 12 Si 18 B 10 catalyst achieves excellent NO 3 RR performance with an NH 3 yield rate of 9.11 mg h –1 cm –2 and a NH 3 Faradaic efficiency (FE) of 96.4% in 0.1 M NO 3 – electrolytes, outperforming most of the reported catalysts. This work demonstrates that nonmetallic alloyed nanocrystals enable highly efficient electrocatalysis, highlighting their promise for economically and environmentally treating wastewater into valuable NH 3 and energy storage.