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通过原位飞行时间二次离子质谱法重新审视金电极上的经典氧化还原过程:金去了哪里?

Revisiting a classical redox process on a gold electrode by operando ToF-SIMS: where does the gold go?

作者信息

Hua Xin, Xia Hai-Lun, Long Yi-Tao

机构信息

Key Laboratory for Advanced Materials & School of Chemistry and Molecular Engineering , East China University of Science and Technology , Shanghai 200237 , P. R. China . Email:

出版信息

Chem Sci. 2019 May 8;10(24):6215-6219. doi: 10.1039/c9sc00956f. eCollection 2019 Jun 28.

Abstract

Electrochemical redox conversion between ferricyanide and ferrocyanide on a gold electrode is one of the most classical reactions in electrochemistry. In textbooks, the gold electrode is seen as chemically inert, on which only the adsorption/desorption of [Fe(CN)] and electron transfer take place. Here, the electrochemical process of [Fe(CN)] on a gold electrode was revisited using a vacuum-compatible microfluidic electrochemical cell in combination with operando liquid ToF-SIMS. An intermediate, Au(CN) , was observed in the cyclic voltammetry of ferricyanide with an interesting periodic potential-dependent variation trend. It was demonstrated that the gold electrode participated in the redox reaction of [Fe(CN)] by competing with it to form Au(CN) , since the formation constant was Fe(CN) > Au(CN) > Fe(CN) . The formation and evolution of Au(CN) depends on the ratio of Fe(iii) and Fe(ii) on the surface of the gold electrode, which was determined by the redox conversion between Fe(iii) and Fe(ii) as well as the electric field force-based attraction or repulsion between the gold electrode and [Fe(CN)]. Both of these factors were potential-dependent, resulting in the periodic change of Au(CN) in the dynamic potential scan of [Fe(CN)]. These results provided solid molecular evidence for the participation of the gold electrode in the [Fe(CN)] redox system, which will deepen mechanistic understandings of related electrochemical applications.

摘要

铁氰化物与亚铁氰化物在金电极上的电化学氧化还原转换是电化学中最经典的反应之一。在教科书中,金电极被视为化学惰性电极,其上仅发生[Fe(CN)]的吸附/解吸和电子转移。在此,使用与真空兼容的微流控电化学池结合原位液体飞行时间二次离子质谱(operando liquid ToF-SIMS)重新研究了[Fe(CN)]在金电极上的电化学过程。在铁氰化物的循环伏安法中观察到一种中间体Au(CN),其具有有趣的周期性电位依赖性变化趋势。结果表明,金电极通过与[Fe(CN)]竞争形成Au(CN)而参与了[Fe(CN)]的氧化还原反应,因为形成常数为Fe(CN)>Au(CN)>Fe(CN)。Au(CN)的形成和演化取决于金电极表面Fe(iii)和Fe(ii)的比例,这由Fe(iii)和Fe(ii)之间的氧化还原转换以及金电极与[Fe(CN)]之间基于电场力的吸引或排斥决定。这两个因素均与电位有关,导致在[Fe(CN)]的动态电位扫描中Au(CN)出现周期性变化。这些结果为金电极参与[Fe(CN)]氧化还原体系提供了确凿的分子证据,这将加深对相关电化学应用机理的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a05/6585599/a64412677542/c9sc00956f-f1.jpg

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