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金属富勒烯薄膜的电化学:Dy@C82的主要异构体。

Electrochemistry of metallofullerene films: the major isomer of Dy@C82.

作者信息

Fan Louzhen, Yang Shangfeng, Yang Shihe

机构信息

Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

出版信息

Chemistry. 2003 Nov 21;9(22):5610-7. doi: 10.1002/chem.200304882.

Abstract

Solution-cast films of the major isomer of Dy@C(82) (Dy@C(82)(I)) have been studied by cyclic voltammetry (CV) in acetonitrile. The films are found to display pronounced and stable redox responses in solution. The reduction/reoxidation processes exhibit large splittings between the first two reduction and reoxidation waves. However, a pair of reversible oxidation and rereduction waves is observed after the reoxidation of a reduced film. The characteristics and the inter-relationship of these waves are uncovered by the CV technique, scanning electron microscopy (SEM), and UV/Vis-NIR spectra. A possible mechanism is proposed for the film electrode processes, which emphasizes the redox-induced structural reorganization of the metallofullerene film by the incorporation and expulsion of electrolyte ions into and out of the film. The influence of the counter ion diffusivity and the ion-pair stability on the electrochemical activity of the metallofullerene film has also been indicated.

摘要

通过循环伏安法(CV)在乙腈中对Dy@C(82)的主要异构体(Dy@C(82)(I))的溶液浇铸膜进行了研究。发现这些膜在溶液中表现出明显且稳定的氧化还原响应。还原/再氧化过程在前两个还原波和再氧化波之间表现出较大的分裂。然而,在还原膜再氧化后观察到一对可逆的氧化和再还原波。通过CV技术、扫描电子显微镜(SEM)和紫外/可见-近红外光谱揭示了这些波的特征及其相互关系。提出了一种可能的膜电极过程机制,该机制强调通过电解质离子进出膜的掺入和排出,氧化还原诱导金属富勒烯膜的结构重组。还指出了抗衡离子扩散率和离子对稳定性对金属富勒烯膜电化学活性的影响。

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