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Electrostatic Binding of Metal Complexes to Electrode Surfaces Coated with Highly Charged Polymeric Films

机译:金属配合物与带高电荷聚合物膜的电极表面的静电结合

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摘要

Previous reports in which metal complexes have been attached to electrode surfaces coated with polymeric molecules have depended upon the formation of covalent or coordination bonds in the attachment procedure (1-4). Such schemes can be quite successful but depending, as they do, on rather specific surface chemistry, they are not applicable to as wide a variety of metal complexes as might be desirable. We have observed that coating graphite electrodes with polymers bearing charged ionic groups produces surfaces which strongly bind multiply-charged metal complexes bearing charges opposite to that on the attached ionic polymer. By exploiting this observation it is entirely possible that virtually any desired metal ion can be attached in large quantities to electrode surfaces by coordinating the metal ion with ligands that produce a multiply-charged complex ion.
机译:以前的报道中,金属络合物已经附着在涂有聚合物分子的电极表面上,这取决于附着程序中共价键或配位键的形成(1-4)。这样的方案可能是相当成功的,但是由于它们确实取决于特定的表面化学性质,因此它们不适用于可能需要的各种金属络合物。我们已经观察到,用带有带电离子基团的聚合物涂覆石墨电极产生的表面牢固地结合了带多电荷的金属配合物,该金属配合物带有与所连接的离子聚合物相反的电荷。通过利用该观察结果,通过将金属离子与产生多电荷复合离子的配体配位,实际上几乎可以将任何所需的金属离子大量附着到电极表面。

著录项

  • 作者

    Oyama Noboru; Anson Fred C.;

  • 作者单位
  • 年度 1980
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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