亚硝酸盐
催化作用
氨
钴
法拉第效率
钼
电化学
无机化学
氧化钴
氧化物
化学
材料科学
电极
化学工程
硝酸盐
有机化学
物理化学
冶金
工程类
作者
Ye Li,Ling Ouyang,Jie Chen,Xiaoya Fan,Hang Sun,Xun He,Dongdong Zheng,Shengjun Sun,Yongsong Luo,Qian Liu,Luming Li,Wei Chu,Juan Du,Qingquan Kong,Baozhan Zheng,Xuping Sun
标识
DOI:10.1016/j.jcis.2024.02.153
摘要
Electrochemical conversion of nitrite (NO2−) contaminant to green ammonia (NH3) is a promising approach to achieve the nitrogen cycle. The slow kinetics of the complex multi-reaction process remains a serious issue, and there is still a need to design highly effective and selective catalysts. Herein, we report that molybdenum doped cobalt oxide nanoarray on titanium mesh (Mo-Co3O4/TM) acts as a catalyst to facilitate electroreduction of NO2− to NH3. Such a catalyst delivers an extremely high Faradaic efficiency of 96.9 % and a corresponding NH3 yield of 651.5 μmol h−1 cm−2 at −0.5 V with strong stability. Density functional theory calculations reveal that the introduction of Mo can induce the redistribution of electrons around Co atoms and further strengthen the adsorption of NO2−, which is the key to facilitating the catalytic performance. Furthermore, the assembled battery based on Mo-Co3O4/TM suggests its practical application value.
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