首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Govalent modification of glassy carbon surface with organic redox probe through diamine linkers using electrochemical and solid-phase synthesis methodologies
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Govalent modification of glassy carbon surface with organic redox probe through diamine linkers using electrochemical and solid-phase synthesis methodologies

机译:通过二胺连接基使用电化学和固相合成方法用有机氧化还原探针对玻璃碳表面进行价态修饰

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摘要

Various mono-Boc-protected diamines have been covalently grafted to glassy carbon electrodes by electrochemical oxidation of the free amine. After deprotection of the Boc group, anthraquinone and nitrobenzene probes were coupled to the linkers using solid-phase coupling reactions. X-Ray photoelectron spectroscopy and cyclic voltammetry were used to monitor the coupling efficiency, effect of linker length on the surface coverage and electron transfer between the attached redox probes and electrode. The anthraquinone surface coverage was found to decrease as the chain length of alkyl diamine linker increased and the electron transfer kinetics were found to be faster for the lower coverages and the longer, more flexible linkers. In the case of nitrobenzene, there was only a slightly change in coverage with increasing linker length. This electrochemical attachment of protected diamine linkers followed by solid-phase coupling provides a very versatile methodology for attaching a wide range of molecular architectures onto glassy carbon surfaces.
机译:通过游离胺的电化学氧化,各种单-Boc保护的二胺已被共价接枝到玻璃碳电极上。 Boc基团脱保护后,使用固相偶联反应将蒽醌和硝基苯探针偶联到接头上。使用X射线光电子能谱和循环伏安法监测偶联效率,接头长度对表面覆盖率的影响以及所连接的氧化还原探针和电极之间的电子转移。发现蒽醌表面覆盖率随着烷基二胺连接体链长的增加而降低,并且发现对于较低覆盖率和更长,更柔韧的连接体,电子转移动力学更快。在硝基苯的情况下,随着连接子长度的增加,覆盖率仅有轻微变化。受保护的二胺连接基的电化学连接,然后进行固相偶联,为将各种分子结构连接到玻璃碳表面提供了一种非常通用的方法。

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