化学
拉曼光谱
反应中间体
双功能
电化学
铂金
反应机理
光化学
合金
吸附
氢
离子
无机化学
催化作用
化学工程
物理化学
电极
有机化学
工程类
物理
光学
作者
Yaohui Wang,Xiao‐Ting Wang,Huajie Ze,Xia‐Guang Zhang,Petar M. Radjenovic,Yue‐Jiao Zhang,Jin‐Chao Dong,Zhong‐Qun Tian,Jianfeng Li
标识
DOI:10.1002/anie.202015571
摘要
Abstract Elucidating hydrogen oxidation reaction (HOR) mechanisms in alkaline conditions is vital for understanding and improving the efficiency of anion‐exchange‐membrane fuel cells. However, uncertainty remains around the alkaline HOR mechanism owing to a lack of direct in situ evidence of intermediates. In this study, in situ electrochemical surface‐enhanced Raman spectroscopy (SERS) and DFT were used to study HOR processes on PtNi alloy and Pt surfaces, respectively. Spectroscopic evidence indicates that adsorbed hydroxy species (OH ad ) were directly involved in HOR processes in alkaline conditions on the PtNi alloy surface. However, OH ad species were not observed on the Pt surface during the HOR. We show that Ni doping promoted hydroxy adsorption on the platinum‐alloy catalytic surface, improving the HOR activity. DFT calculations also suggest that the free energy was decreased by hydroxy adsorption. Consequently, tuning OH adsorption by designing bifunctional catalysts is an efficient method for promoting HOR activity.
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