铬
电化学
催化作用
氨
法拉第效率
电解
氮化铬
氧化还原
材料科学
无机化学
氮化物
氨生产
化学
化学工程
冶金
纳米技术
电极
有机化学
物理化学
工程类
电解质
图层(电子)
作者
Yao Yao,Qi Feng,Shangqian Zhu,Jiadong Li,Yuze Yao,Yajun Wang,Qi Wang,Meng Gu,Haijiang Wang,Hui Li,Xiao−Zi Yuan,Minhua Shao
标识
DOI:10.1002/smtd.201800324
摘要
Abstract The electrochemical synthesis of ammonia via nitrogen reduction reaction (NRR) has received much attention as a more environmentally friendly and less energy consuming technology than the conventional Haber–Bosch process. The catalytic activities of all NRR electrocatalysts reported so far, however, are very low under ambient conditions. In this study, partially oxidized chromium nitride (chromium oxynitride) nanoparticles are synthesized and their NRR activities are evaluated in a proton exchange membrane electrolyzer under ambient conditions. The highest ammonia formation rate of 8.9 × 10 −11 mol s −1 cm −2 and 15.56 µg h −1 mg −1 cat are achieved at a cell voltage of 2.0 V. The highest Faradaic efficiency of 6.7% is achieved at a cell voltage of 1.8 V. The findings demonstrate that metal nitride–based materials can be promising electrocatalysts toward NRR and could guide rational design of more advanced catalysts for various reactions.
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