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A highly sensitive metronidazole sensor based on a Pt nanospheres/polyfurfural film modified electrode

机译:基于Pt纳米球/聚糠醛膜修饰电极的高灵敏甲硝唑传感器

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摘要

In this contribution, we combine the advantages of both Pt nanospheres and polyfurfural film and successfully develop a novel Pt nanospheres/polyfurfural film modified glassy carbon electrode (GCE) for electrochemical sensing of a nitro group containing pentatomic cyclic compound, metronidazole. In particular, the polyfurfural film and Pt nanospheres were handily obtained by a one-step electropolymerization method and a potential step method, respectively. Benefiting from their excellent synergistic catalytical properties, the Pt nanospheres/polyfurfural film/GCE shows significantly enhanced electrocatalytic activity towards metronidazole. A series of experimental parameters including the electropolymerization cycles of furfural, the deposition time of platinum, accumulation time, accumulation potential and pH of the supporting electrolyte for metronidazole was also investigated and optimized. The proposed sensor exhibited excellent selectivity, stability and reproducibility for the determination of metronidazole, providing a wide linear detection range from 2.5 to 500 μmol dm?3 and a low detection limit of 50 nmol dm?3 (S/N = 3) under optimal experimental conditions. When the proposed sensor was applied to determine metronidazole in real human serum samples, it gave a satisfactory result.
机译:在这项贡献中,我们结合了Pt纳米球和聚糠醛膜的优点,成功开发了一种新型Pt纳米球/聚糠醛膜修饰的玻碳电极(GCE),用于电化学检测含硝基的五原子环状化合物甲硝唑。特别地,分别通过一步电聚合法和电位步骤法容易地获得聚糠醛膜和Pt纳米球。得益于其出色的协同催化性能,Pt纳米球/聚糠醛膜/ GCE显示出对甲硝唑的显着增强的电催化活性。还研究和优化了糠醛的电聚合循环,铂的沉积时间,积累时间,积累电势和支持电解质对甲硝唑的一系列实验参数。所提出的传感器对甲硝唑的测定具有优异的选择性,稳定性和可重复性,线性检测范围从2.5到500μmoldm ?3 ,检测限低。在最佳实验条件下50 nmol dm ?3 (S / N = 3)。当所提出的传感器用于测定真实人血清样品中的甲硝唑时,它给出了令人满意的结果。

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