电催化剂
法拉第效率
催化作用
可逆氢电极
吸附
铜
电化学
材料科学
无机化学
氧气
氨生产
电子转移
氧化还原
氮气
纳米颗粒
氨
化学工程
光化学
化学
电极
纳米技术
工作电极
有机化学
物理化学
冶金
工程类
作者
Wahyu Prasetyo Utomo,Hao Wu,Yun Hau Ng
出处
期刊:Small
[Wiley]
日期:2022-04-23
卷期号:18 (25)
被引量:37
标识
DOI:10.1002/smll.202200996
摘要
The electrocatalytic nitrogen reduction reaction (NRR) provides a sustainable route for NH3 synthesis. However, the process is plagued by the strong NN triple bond and high reaction barrier. Modification of catalyst surface to increase N2 adsorption and activation is crucial. Herein, copper nanoparticles are loaded on the oxygen-deficient TiO2 , which exhibits an enhanced NRR performance with NH3 yield of 13.6 µg mgcat-1 h-1 at -0.5 V versus reversible hydrogen electrode (RHE) and Faradaic efficiency of 17.9% at -0.4 V versus RHE compared to the pristine TiO2 . The enhanced performance is ascribed to the higher electrochemically active surface area, promoted electron transfer, and increased electron density originated from the strong metal-support interaction (SMSI) between Cu nanoparticles and oxygen-deficient TiO2 . The SMSI effect also results in lopsided local charge distribution, which polarizes the adsorbed N2 molecules for better activation. This work provides a facile strategy toward the electrocatalyst design for efficient NRR under ambient conditions.
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