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Electrocatalytic Activity of Electropolymerized Meldola’s Blue toward Oxidation of Dopamine

机译:Electrocatalytic activity of Electropolymerized meldola’s Blue toward Oxidation of Dopamine

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摘要

To understand the kinetics of charge transfer from chemically modified electrodes to solution species, the authors have investigated the influence of poly (Meldola’s blue) on the kinetic parameters of dopamine oxidation by rotating disc electrode voltammetry. The polymer film fixed on electrode surfaces raised the dopamine peak current by a factor of 10 in a 0.1 mM solution; this electrocatalytic effect enables one to detect dopamine at concentrations of the order of 5 µM. The polymer film increased the standard heterogeneous rate constant of dopamine oxidation more than 10-fold and favored a two-electron transfer step, thus raising the dependence of the kinetic current on the electrode potential. These effects were independent of electron self-exchange between redox-active sites in the film. They arose from the incorporation of dopamine with the polymer. This binding interaction decreased with protonation of the polymer, because of electrostatic repulsion between the positively charged species.
机译:为了了解电荷从化学修饰的电极转移到溶液物质的动力学,作者通过旋转圆盘电极伏安法研究了聚(Meldola蓝色)对多巴胺氧化动力学参数的影响。固定在电极表面的聚合物膜在0.1 mM溶液中使多巴胺峰值电流提高了10倍。这种电催化作用使人们能够检测浓度为5 µM的多巴胺。聚合物膜将多巴胺氧化的标准非均相速率常数提高了10倍以上,有利于两电子转移步骤,因此增加了动电流对电极电势的依赖性。这些效应与膜中氧化还原活性位点之间的电子自交换无关。它们源自多巴胺与聚合物的结合。由于带正电的物质之间的静电排斥,这种结合相互作用随着聚合物的质子化而降低。

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