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Updated: Feb 14, 2026

Ammonia Synthesis at Low Pressure
Published on: August 23, 2017
Spin-Selective Anti-Perovskite Enables Breakthrough Nitrate-to-Ammonia Electrocatalysis
Chun-Kuo Peng1, Hsiang-Chun Yu1, Shih-Ching Huang1
1Scientific Research Division, National Synchrotron Radiation Research Center, Hsinchu, Taiwan.
None:
Electrochemical nitrate reduction to ammonia offers environmental and energy benefits, but progress is hindered by sluggish multistep proton-coupled electron transfers and competing side reactions. Here, we introduce an antiperovskite CuNCo3 catalyst featuring a 3d-3d interaction framework. This framework stabilizes spin-selective Co sites even upon surface Co-N bond cleavage and drives asymmetric nitrate consumption. CuNCo3 achieves 100% Faradaic efficiency and an NH3 production rate of 124.6 mg mgcat -1 h-1 at -0.4 V vs. RHE. Operando XAS, XES, and ATR-FTIR directly link the evolution of spin-selective Co sites with specific NO3RR intermediates, revealing that spin-selective Co sites lower hydrogenation barriers and accelerate key steps. These results demonstrate that spin-selective anti-perovskite frameworks provide a robust, earth-abundant platform for high-performance nitrate-to-ammonia electrocatalysts.
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