亚硝酸盐
氨
催化作用
化学
氨生产
电化学
选择性催化还原
贵金属
无机化学
纳米技术
材料科学
硝酸盐
电极
有机化学
物理化学
作者
Luchao Yue,Wei Song,Lixin Zhang,Yonglan Luo,Yan Wang,Tingshuai Li,Binwu Ying,Shengjun Sun,Dongdong Zheng,Qian Liu,Asmaa Farouk,Mohamed S. Hamdy,Sulaiman Alfaifi,Xuping Sun
标识
DOI:10.1002/sstr.202300168
摘要
Industrial ammonia production mainly relies on the conventional Haber–Bosch process accompanied by high energy consumption and plentiful carbon dioxide emissions, which triggered the recent interest to explore more energy‐efficient and environmentally benign alternatives. Very recently, electrochemical nitrite reduction in an aqueous medium promises new opportunities for advanced, energy‐efficient, and sustainable ammonia production at ambient conditions. The ammonia formation rate and Faradic efficiency are strongly associated with the adopted electrocatalysts; therefore, striving for high‐efficient electrocatalysts is the key to sustainable ammonia production via the electrochemical nitrite reduction reaction. Herein, a critical overview of recent advances in electrochemical nitrite reduction reaction to ammonia is presented, highlighting the latest innovative heterogenous electrocatalysts including noble metal catalysts, transition‐metal‐based catalysts, and their compounds. Meanwhile, the possible reaction pathway of nitrite electroreduction to ammonia, ammonia detection, and catalytic activity descriptor are briefly summarized. Finally, the perspective and research challenges of electrocatalysts that convert nitrite to ammonia are outlined, increasing their contributions in the route of realizing a neutral carbon footprint.
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