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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Electrochemical oxidation of dopamine and ascorbic acid at a palladium electrode modified with in situ fabricated iodine-adlayer in alkaline solution
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Electrochemical oxidation of dopamine and ascorbic acid at a palladium electrode modified with in situ fabricated iodine-adlayer in alkaline solution

机译:多巴胺和抗坏血酸在原位制备的碘涂层在碱性溶液中修饰的钯电极上的电化学氧化

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摘要

The self-assembled iodine-adlayer was fabricated at the palladium (Pd) electrode surface throughout a spontaneous oxidative chemisorption of iodide ions contained in an alkaline supporting electrolyte. It enhances the electron transfer kinetics for the oxidation of dopamine (DA) and ascorbic acid (AA) and was important to separate the peak current of both species with a practical potential difference compared with that occurred at the unmodified electrode. The anodic peak currents of both species were linearly increased with their respective concentrations using linear square stripping voltammetry. The activity of the electrode system was further investigated applying chronoamperometry method. The steady-state amperometric signal for the oxidation of DA in the presence of iodide ions was five times greater than that in its absence. The current-time response was also used to evaluate the diffusion coefficient of DA based on Cottrell plot that results with a value of 4.19 x 10(-8) m(2) s(-1). The proposed method was successfully applied to detect DA and AA in human serum.
机译:在碱性支持电解质中碘离子的自发氧化化学吸附过程中,在钯(Pd)电极表面制备了自组装的碘涂层。它增强了多巴胺(DA)和抗坏血酸(AA)氧化的电子转移动力学,并且对于分离两种物质的峰值电流(与未修饰电极上的实际电位差相比)非常重要。使用线性平方溶出伏安法,两种物质的阳极峰值电流随其各自的浓度线性增加。使用计时电流法进一步研究了电极系统的活性。在存在碘离子的情况下用于DA氧化的稳态安培信号比在不存在碘离子的情况下大五倍。当前时间响应还用于基于Cottrell图评估DA的扩散系数,得出的扩散值为4.19 x 10(-8)m(2)s(-1)。该方法已成功应用于人血清中DA和AA的检测。

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