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A novel, biocompatible and electrocatalytic stearic acidanosilver modified glassy carbon electrode for the sensing of paraoxon pesticide in food samples and commercial formulations

机译:一种新型,生物相容性和电催化硬脂酸/纳米单体改性玻璃电极,用于感应食品样品和商业配方中的律杀农药

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摘要

A simple, biocompatible and an enzyme-free sensing platform was developed for detection of paraoxon. The surface of a glassy carbon electrode was modified with an electrodeposition of stearic acidanosilver composite at -0.7 V for 40 s. The paraoxon undergoes electro-reduction at -550 mV on the modified electrode, and the limits of detection (LOD) was calculated as 0.1 nM (S/N = 3) using differential pulse voltammetry which is lower than that of the existing materials reported. The high stability observed with the modified electrode for prolonging period indicated that the sensitivity of the electrode remains active for several runs of the analysis. The developed analytical strategy was implemented for onion and paddy grain samples and good recovery rates were observed. Also, it was applied for analyzing the purity of the commercial paraoxon sample. The reliability of the developed strategy was confirmed by comparing the results of electrochemical approach with that of HPLC technique.
机译:开发了一种简单,生物相容性和一种酶传感平台,用于检测律植物。用硬沉积的硬脂酸/纳米ilm复合材料的电沉积在-0.7V下进行改性玻璃状碳电极的表面。副4.修饰电极上的电镀在-550mV上进行电解,并且使用低于报道的现有材料的差分脉冲伏安法计算检测限(S / N = 3)。用改性电极延长时段观察到的高稳定性表明电极的灵敏度对于几次分析,电极的灵敏度保持活性。开发的分析策略用于洋葱和水稻谷物样品,观察到良好的恢复率。此外,它应用于分析商业律素样品的纯度。通过比较HPLC技术的电化学方法的结果,确认了开发策略的可靠性。

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