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首页> 外文期刊>Electrochimica Acta >Immobilisation of Alkylamine-Functionalised Osmium Redox Complex on Glassy Carbon using Electrochemical Oxidation
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Immobilisation of Alkylamine-Functionalised Osmium Redox Complex on Glassy Carbon using Electrochemical Oxidation

机译:电化学氧化法固定化烷基胺官能化Red氧化还原络合物在玻碳上的固定

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The electrochemical oxidation of alkylamines provides a method for modification of carbon, and other surfaces via formation of a radical amine that reacts with the surface. Direct electrochemical oxidation of an alkylamine functional group of a redox complex provides a simple route to preparation of a redox active layer on carbon surfaces. Here we report on oxidation of an osmium redox complex, containing an alkylamine ligand distal to the metal co-ordination site, on carbon electrodes to directly produce a redox active film on the surface. The presence of the redox-active layer of osmium complexes is confirmed by cyclic voltammetry and X-Ray photoelectron spectroscopy. The average surface coverage of the attached film upon electrolysis of an [Os(2,2'-bipyridine)_2(4-aminomethylpyridine)Cl].PF_6 complex is 0.84 (± 0.3) × 10~(-10) moles cm~(-2), demonstrating that coverages close to that predicted for a close-packed monolayer of complex is attained. The bioelectrocatalytic activity of the modified electrode was evaluated for oxidation of glucose in presence of glucose oxidase in solution. Hence, electrochemical coupling of alkylamine functionalised osmium redox complexes provides a simple and efficient methodology for obtaining redox active monolayers on carbon surfaces with potential applications to biosensor and biofuel cell device development.
机译:烷基胺的电化学氧化提供了一种通过形成与表面反应的自由基胺来修饰碳和其他表面的方法。氧化还原络合物的烷基胺官能团的直接电化学氧化提供了在碳表面上制备氧化还原活性层的简单途径。在这里,我们报道了在碳电极上氧化containing氧化还原络合物的氧化反应,该络合物在金属配位位点的远端包含烷基胺配体,以在表面直接产生氧化还原活性膜。通过循环伏安法和X射线光电子能谱法证实了complex络合物的氧化还原活性层的存在。电解[Os(2,2'-联吡啶)_2(4-氨基甲基吡啶)Cl] .PF_6络合物时,附着膜的平均表面覆盖率为0.84(±0.3)×10〜(-10)摩尔cm〜( -2),表明达到了与紧密堆积的复合物单分子层预期的覆盖率相同的覆盖率。在溶液中存在葡萄糖氧化酶的情况下,评价了修饰电极的生物电催化活性对葡萄糖的氧化。因此,烷基胺官能化的red氧化还原络合物的电化学偶联为在碳表面上获得氧化还原活性单层提供了一种简单有效的方法,对生物传感器和生物燃料电池装置的开发有潜在的应用。

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