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Electrochemical Oxidation of Sulfamethazine on Multi-Walled Nanotube Film Coated Glassy Carbon Electrode

机译:磺胺二甲嘧啶在多壁纳米管薄膜涂层玻碳电极上的电化学氧化

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The electrochemical oxidation of sulfamethazine (SMZ) has been studied at a multi-walled carbon nanotubes modified glassy carbon electrode (MWCNT-GCE) by cyclic voltammetry. This modified electrode (MWCNT-GCE) exhibited excellent electrocatalytic behavior toward the oxidation of SMZ as evidenced by the enhancement of the oxidation peak current and the shift in the anodic potential to less positive values (170 mV) in comparison with the bare GCE. The formal potential, E0', of SMZ is pH dependent with a slope of 54 mV per unit of pH, close to the anticipated Nerstian value of 59 mV for a 2-electron and 2-proton oxidation process. A detailed analysis of cyclic voltammograms gave fundamental electrochemical parameters including the electroactive surface coverage (Г), the transfer coefficient (a), the heterogeneous rate constant (ks). Under the selected conditions, the peak current shows two dynamic linear ranges of 10-200 mM and 300-3000 mM with the detection limit of 6.1 mM. The method was successfully applied to analyze SMZ in serum sample.
机译:通过循环伏安法在多壁碳纳米管修饰玻碳电极(MWCNT-GCE)上研究了磺胺二甲嘧啶(SMZ)的电化学氧化。这种修饰电极(MWCNT-GCE)对SMZ的氧化表现出优异的电催化性能,这与氧化GCE相比,氧化峰电流的增加以及阳极电势向较小的正值(170 mV)的迁移证明了这一点。 SMZ的形式势E0'取决于pH,其斜率是每单位pH 54 mV,接近2电子和2质子氧化过程的预期Nerstian值59 mV。循环伏安图的详细分析给出了基本的电化学参数,包括电活性表面覆盖率(Г),转移系数(a),异质速率常数(ks)。在选定的条件下,峰值电流显示两个动态线性范围,分别为10-200 mM和300-3000 mM,检测极限为6.1 mM。该方法已成功应用于血清样品中SMZ的分析。

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