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Electrochemical studies of ganciclovir at boron-doped nanocrystalline diamond electrodes

机译:更昔洛韦在硼掺杂纳米晶金刚石电极上的电化学研究

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The electrochemical oxidation of ganciclovir was investigated at boron-doped nanocrystalline diamond (BDND) electrodes by the use of cyclic voltammetry and differential pulse voltammetry. The optimization of the experimental variables including supporting electrolyte and pH value was studied, and the 0.04-M Britton-Robinson buffer solution (pH 2.5) was selected. The relationship of the oxidation peak potential to scan rate and pH value was also investigated, and 2 electron transfer and 2 proton participation for the oxidation process of ganciclovir at BDND electrode were obtained. Compared with boron-doped microcrystalline diamond and glassy carbon electrodes, the BDND electrode demonstrated the wider linear range of 0.5-350 pM, lower limit of detection of 0.2 ìM, and higher reproducibility and stability for the determination of ganciclovir under the optimum conditions. For the analysis of ganciclovir in human serum at the BDND electrodes, precision and accuracy were checked by recovery experiments.
机译:通过循环伏安法和差分脉冲伏安法研究了更昔洛韦在硼掺杂纳米晶金刚石(BDND)电极上的电化学氧化作用。研究了包括支持电解质和pH值在内的实验变量的优化,并选择了0.04-M Britton-Robinson缓冲溶液(pH 2.5)。还研究了氧化峰电位与扫描速率和pH值之间的关系,并获得了更昔洛韦在BDND电极氧化过程中的2个电子转移和2个质子参与。与硼掺杂的微晶金刚石和玻璃碳电极相比,BDND电极在最适条件下测定更昔洛韦的线性范围更广,为0.5-350 pM,检测下限为0.2μM,重现性和稳定性更高。为了在BDND电极上分析人血清中的更昔洛韦,通过回收率实验检查了准确性和准确性。

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