电催化剂
润湿
催化作用
电化学
化学
碳纤维
电解质
纳米材料基催化剂
化学工程
聚结(物理)
氟
无机化学
材料科学
电极
物理化学
有机化学
物理
工程类
复合数
复合材料
天体生物学
作者
Kai Shi,Zackary S. Parsons,Xiaofeng Feng
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2023-06-06
卷期号:8 (7): 2919-2926
被引量:8
标识
DOI:10.1021/acsenergylett.3c00962
摘要
Many electrochemical reactions for the development of renewable energy technologies are gas-evolving reactions, where the electrocatalytic performance is susceptible to the wetting properties of the catalyst microenvironment. Here, using N2H4 electro-oxidation to N2 on carbon-supported Pt nanocatalysts as a model reaction, we controlled the microenvironment using oxygen-doped and fluorine-doped carbon supports to make it more hydrophilic and more hydrophobic, respectively, and elucidated the effect on the reaction kinetics. The electrode with oxygen-doped carbon showed a 123% higher activity than that with pristine carbon, benefiting from the increased wetting and exposure of Pt catalytic sites to the electrolyte. Counterintuitively, the electrode with fluorine-doped carbon also exhibited a 46% higher activity than that with pristine carbon, despite its lower wetting of Pt. We found that the hydrophobic microenvironment accelerated the surface diffusion, coalescence, and detachment of the generated N2 gas bubbles, which would otherwise block the Pt active sites from catalyzing the reaction.
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