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首页> 外文期刊>Materials science & engineering >Silver nanoparticles impregnated chitosan layered carbon nanotube as sensor interface for electrochemical detection of clopidogrel in-vitro
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Silver nanoparticles impregnated chitosan layered carbon nanotube as sensor interface for electrochemical detection of clopidogrel in-vitro

机译:纳米银浸渍壳聚糖层状碳纳米管作为体外氯吡格雷电化学检测的传感器界面

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摘要

Continuous periodical monitoring of clopidogrel in physiological body fluids is indispensable in medical diagnosis of heart ailments and cardiovascular diseases. A highly sensitive electrochemical sensor has been fabricated with silver nanoparticles embedded chitosan-carbon nanotube hybrid composite (AgChit-CNT) as sensor interface for detection of the important anti-platelet drug, clopidogrel (CLP). Synthesized AgChit-CNT nanocomposite is examined by x-ray diffraction, Raman spectroscopy and field emission scanning electron microscopy for its chemical and structural characteristics. Crystalline silver nanoparticles of about 35 nm are well distributed in the composite and have formed continuous chain like linkages with CNTs all throughout. Electrochemical responses of the fabricated AgChit-CNT nanocomposite electrode for the determination of CLP have been examined by cyclic voltammetry and electrochemical impedance spectroscopy. The nanoAg patterned CNT nanocomposite interface acts as an excellent electron transfer mediator towards the oxidation of clopidogrel. Electrochemical determination of CLP was investigated by differential pulse voltammetry (DPV) and amperometric analysis under optimized conditions. The limit of detection by DPV and amperometry were 30 nM and 10 nM, respectively, and the time of the analysis is as low as 10 s. Practical applicability for determination in artificially prepared urine and pharmaceutical formulation has been examined with good recovery limits of 95.2 to 102.6%.
机译:在心脏病和心血管疾病的医学诊断中,持续定期监测生理体液中的氯吡格雷是必不可少的。高灵敏度的电化学传感器已经制成,其中嵌入了纳米银,壳聚糖-碳纳米管杂化复合材料(AgChit-CNT)作为传感器界面,用于检测重要的抗血小板药物氯吡格雷(CLP)。通过X射线衍射,拉曼光谱和场发射扫描电子显微镜检查了合成的AgChit-CNT纳米复合材料的化学和结构特征。约35 nm的结晶银纳米粒子很好地分布在复合物中,并与CNT形成了连续的链状连接。通过循环伏安法和电化学阻抗谱研究了制备的AgChit-CNT纳米复合电极对CLP的电化学响应。 nanoAg图案化的CNT纳米复合材料界面是氯吡格雷氧化的出色电子转移介质。在优化条件下,通过差分脉冲伏安法(DPV)和安培分析研究了CLP的电化学测定。 DPV和安培法的检测极限分别为30 nM和10 nM,分析时间低至10 s。已经检验了在人工制备的尿液和药物制剂中测定的实际适用性,回收率良好,达到95.2%至102.6%。

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