催化作用
氨
电化学
空位缺陷
选择性催化还原
机制(生物学)
材料科学
氨生产
反应机理
氧化物
组合化学
纳米技术
化学
有机化学
物理化学
哲学
电极
认识论
结晶学
作者
Lin‐Ling Gan,Zhen Liao,Huimei Zhang,Jinxia Jiang,Zhikai Chen
标识
DOI:10.3389/fchem.2024.1452689
摘要
Ammonia (NH₃) is a crucial industrial raw material, but the traditional Haber-Bosch process is energy-intensive and highly polluting. Electrochemical methods for synthesizing ammonia using nitric oxide (NO) as a precursor offer the advantages of operating under ambient conditions and achieving both NO reduction and resource utilization. Defect engineering enhances electrocatalytic performance by modulating electronic structures and coordination environments. In this brief review, the catalytic reaction mechanism of electrocatalytic NO reduction to NH 3 is elucidated, with a focus on synthesis strategies involving vacancy defects and doping defects. From this perspective, the latest advances in various catalytic reduction systems for nitric oxide reduction reaction (NORR) are summarized and synthesized. Finally, the research prospects for NO reduction to NH₃ are discussed.
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