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首页> 外文期刊>International journal of environmental analytical chemistry >A novel sensor based on multi-walled carbon nanotubes and boron-doped double-layer molecularly imprinted membrane for the analysis of SCZ in pharmaceutical and biological samples
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A novel sensor based on multi-walled carbon nanotubes and boron-doped double-layer molecularly imprinted membrane for the analysis of SCZ in pharmaceutical and biological samples

机译:基于多壁碳纳米管和掺硼双层分子印迹膜的新型传感器,用于分析药物和生物样品中的SCZ

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摘要

A molecularly imprinted electrochemical sensor for the rapid detection of the anti-parasitic drug Secnidazole (SCZ) is reported. In this work, the build electrochemical sensor was based on a carbon paste electrode (CPE) modified with multi-wall carbon nanotubes (MWCNTs) and boron-embedded duplex molecularly imprinted composite membranes (B-DMICMs), that significantly increased the efficiency of the sensor for the detection of template molecule SCZ. Density functional theory (DFT) was employed to study the interactions between the template and monomers to select appropriate functional monomers for rational design of the B-DMICMs.The optimal experimental conditions were optimised for the factors affecting the performance of the sensor. Under the optimal conditions, the reduction peak currents of SCZ by differential pulse voltammetry increased linearly with SCZ concentration in the range from 3.0 x 10(-4) to 1.0 x 1.0(-6) mol L-1 and 1.0 x 1.0(-6) to 1.91 x 10(-8) mol L-1 with a detection limit of 1.72 x 10(-8) mol L-1 for secnidazole, which is significantly lower than those in the currently used methods and in previous reports. This method offers low cost, sensitive and effective determination of SCZ and can potentially be used for detection of SCZ in pharmaceutical and biological samples with good precision and accuracy.
机译:报道了一种分子印迹电化学传感器,用于快速检测抗寄生虫药塞尼达唑(SCZ)。在这项工作中,构建电化学传感器基于经多壁碳纳米管(MWCNT)和硼嵌入双分子分子印迹复合膜(B-DMICM)修饰的碳糊电极(CPE),从而显着提高了膜的效率。用于检测模板分子SCZ的传感器。利用密度泛函理论(DFT)研究了模板与单体之间的相互作用,为B-DMICM的合理设计选择合适的功能单体,并针对影响传感器性能的因素优化了最佳实验条件。在最佳条件下,通过差分脉冲伏安法测得的SCZ还原峰电流随SCZ浓度在3.0 x 10(-4)到1.0 x 1.0(-6)mol L-1和1.0 x 1.0(-6)范围内线性增加。 )至1.91 x 10(-8)mol L-1,对塞尼达唑的检出限为1.72 x 10(-8)mol L-1,大大低于当前使用的方法和以前的报告中的检测限。该方法提供了低成本,灵敏和有效的SCZ测定方法,可潜在地用于以良好的精度和准确性检测药物和生物样品中的SCZ。

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