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首页> 外文期刊>Electrochimica Acta >Covalent modification of carbon surfaces with ferrocene groups through a self-mediated oxidation of tetrabutylammonium salts of ferrocene-carboxylic acids
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Covalent modification of carbon surfaces with ferrocene groups through a self-mediated oxidation of tetrabutylammonium salts of ferrocene-carboxylic acids

机译:通过二茂铁羧酸的四丁基铵盐的自介导氧化,用二茂铁基团对碳表面进行共价修饰

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摘要

In this work, a one-step and efficient electrochemical method to covalently modify carbon surfaces with ferrocene moieties is reported. The method is based on the electrochemical oxidation of ferrocenecarboxylate, ferroceneacetate and ferroceneheptanoate ions in acetonitrile on glassy carbon and HOPG electrodes. It is shown that the covalent surface modification is possible because of the intervention of radicals, which are generated in a self-mediated electron transfer process. The activation step of the mediated mechanism allows to generate a transient ferrocenium-carboxylate zwitterion that, depending on the concentration and the length of the aliphatic chain separating the ferrocene moiety from the carboxylate functional group, is consumed by either an intramolecular or an intermolecular electron transfer reaction to afford a ferrocenyl or a ferrocenylalkyl radical, which then reacts with the carbon surface. An important feature of the process is the fact that the ferrocene layer does not inhibit the electrode surface but rather acts as a surface redox catalyst for further oxidation and decarboxylation processes.
机译:在这项工作中,报告了一种一步有效的电化学方法,用二茂铁部分共价修饰碳表面。该方法基于玻璃碳和HOPG电极上乙腈中二茂铁羧酸根,二茂铁乙酸根和二茂铁庚酸根离子的电化学氧化。结果表明,由于自由基的干预,共价表面改性是可能的,这些自由基是在自介导的电子转移过程中产生的。介导机制的活化步骤允许产生瞬时的二茂铁羧酸盐两性离子,其取决于分子内或分子间电子转移消耗二茂铁部分与羧酸盐官能团的脂族链的浓度和长度。反应得到二茂铁基或二茂铁基烷基,其随后与碳表面反应。该方法的重要特征是二茂铁层不抑制电极表面而是充当进一步氧化和脱羧过程的表面氧化还原催化剂的事实。

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