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A promising electrochemical sensing platform based on copper nanoparticles-decorated polymer in carbon nanotube electrode for monitoring methimazole

机译:一种基于铜纳米粒子装饰聚合物在碳纳米氨唑中的铜纳米粒子装饰聚合物的有前途的电化学传感平台

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In this paper, a novel and convenient electrochemical sensor for detection of methimazole (MMI) by differential pulse voltammetry is presented. This sensor was fabricated by dripping well-dispersed MWCNTs onto glassy carbon electrode (GCE) surface, and then poly-l-Arg (P-L-Arg) film was deposited on the electrode. Finally, Cu nanoparticles (CuNPs) were electrochemically deposited on the resulting film by using cyclic voltammetry to prepare CuNPs-P-L-Arg/MWCNTs/GCE. The surface morphology of the electrodes has been studied by scanning electron microscopy. Studies reveal that the irreversible oxidation of MMI was highly facile on CuNPs-P-L-Arg/MWCNTs/GCE. The dynamic detection range of this sensor to MMI was 5.2-50 A mu M, with the detection limit of 2 A mu M. A new voltammetric method for determination of MMI was erected and shows good sensitivity and selectivity, very easy surface update and good stability. The analytical application of the modified electrode is demonstrated by determining MMI in biological fluids (serum).
机译:在本文中,提出了一种通过差分脉冲伏安法检测甲咪唑(MMI)的新颖和方便的电化学传感器。通过将分散的MWCNT浸泡在玻璃状碳电极(GCE)表面上,将该传感器制成,然后沉积在电极上的Poly-L-Arg(P-L-Arg)膜。最后,通过使用循环伏安法在所得薄膜上电化学沉积Cu纳米颗粒(CUNP)以制备CUNPS-P-L-ARG / MWCNT / GCE。通过扫描电子显微镜研究了电极的表面形态。研究表明,MMI的不可逆氧化在CUNPS-P-L-ARG / MWCNT / GCE上具有高度舒适性。该传感器的动态检测范围为MMI为5.2-50 a mu m,检测极限为2 a mu m.竖立一个新的伏安法测定MMI的升温方法,显示出良好的敏感性和选择性,非常容易表面更新和良好稳定。通过在生物流体(血清)中确定MMI来证明改性电极的分析施加。

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