电催化剂
材料科学
氮气
震级(天文学)
化学物理
化学
物理化学
电极
物理
电化学
有机化学
天文
作者
Huayue Song,Xin Liu,Xin Liu,Linlin Zhang,Xin Zhang,H YU,Xuesheng Yang,Mingxia Guo,Zhiwei Liang,Xiao Lin,Xia Liu,Xia Liu,Xin Ding
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-06-05
卷期号:19 (23): 21858-21865
被引量:3
标识
DOI:10.1021/acsnano.5c06466
摘要
Electrocatalytic nitrogen oxidation emerges as a promising approach for the eco-friendly synthesis of nitrate, achieving remarkable progress in recent years. However, the precise oxidation mechanism remains poorly understood due to the complex interactions among the catalyst, electrolyte, and various intermediates, making it difficult to fully unravel the reaction pathways. Herein, we employed a Fe-TiO2 catalyst in electrolytes enriched with SO42-/HSO5-, significantly enhancing the nitrogen oxidation process through the in situ generation of *SO5H. Remarkably, an astounding 404-fold improvement over HClO4 in a saturated potassium monopersulfate (PMS) system under a constant current density of 0.40 mA/cm2 was achieved. Furthermore, an H2SO4-mediated electrochemical oxidation mechanism, characterized by the high efficacy and stability of *SO5H, was proposed and validated through the identification of key intermediates, comprehensive operational experiments, and in situ detection of the catalyst's active sites.
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