化学
拉曼光谱
晶体结构
原位
结晶学
单晶
动力学同位素效应
吸附
铂金
催化作用
物理化学
无机化学
反应中间体
有机化学
氘
量子力学
光学
物理
作者
Jin‐Chao Dong,Min Su,Valentín Briega‐Martos,Lang Li,Jia‐Bo Le,Petar M. Radjenovic,Xiao‐Shun Zhou,Juan M. Feliú,Zhong‐Qun Tian,Jianfeng Li
摘要
The study of the oxygen reduction reaction (ORR) at high-index Pt(hkl) single crystal surfaces has received considerable interest due to their well-ordered, typical atomic structures and superior catalytic activities. However, it is difficult to obtain direct spectral evidence of ORR intermediates during reaction processes, especially at high-index Pt(hkl) surfaces. Herein, in situ Raman spectroscopy has been employed to investigate ORR processes at high-index Pt(hkl) surfaces containing the [011̅] crystal zone—i.e., Pt(211) and Pt(311). Through control and isotope substitution experiments, in situ spectroscopic evidence of OH and OOH intermediates at Pt(211) and Pt(311) surfaces was successfully obtained. After detailed analysis based on the Raman spectra and theoretical simulation, it was deduced that the difference in adsorption of OOH at high-index surfaces has a significant effect on the ORR activity. This research illuminates and deepens the understanding of the ORR mechanism on high-index Pt(hkl) surfaces and provides theoretical guidance for the rational design of high activity ORR catalysts.
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