欠电位沉积
铂金
化学
电极
无机化学
吸附
氢
金属
可逆氢电极
碱金属
电化学
电极电位
参比电极
物理化学
催化作用
循环伏安法
有机化学
作者
Xuan Yang,Jared Nash,Nicholas Oliveira,Yushan Yan,Bingjun Xu
标识
DOI:10.1002/anie.201909697
摘要
Abstract Understanding the pH dependent shift of the oxidation peak of the underpotential deposited hydrogen (H upd ) in cyclic voltammograms on the Pt surface is of significance in terms of both the fundamentals of electrochemistry and the rational design of catalysts for the hydrogen oxidation/evolution reactions (HOR/HER). In this work, we provide compelling evidence that the pH dependent shift in the H upd peak on Pt surfaces is driven by the structure of interfacial water rather than the specific adsorption of cations on the electrode surface. Combined cyclic voltammetric and surface enhanced spectroscopic investigations using an organic cation and crown‐ether chelated alkali metal cations show that specific adsorption of metal and organic cations on the Pt surface at the conditions relevant to the HOR/HER is unlikely. The vibrational band corresponding to strongly bound water is monitored when the electrode potential is varied in the H upd range in both acid and base.
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