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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Electrochemical preparation of surface molecularly imprinted poly(3-aminophenylboronic acid)/MWCNTs nanocomposite for sensitive sensing of epinephrine
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Electrochemical preparation of surface molecularly imprinted poly(3-aminophenylboronic acid)/MWCNTs nanocomposite for sensitive sensing of epinephrine

机译:表面的电化学制剂分子印迹聚(3-氨基苯基硼酸)/ MWCNTS纳米复合材料用于肾上腺素的敏感感应

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摘要

A nanocomposite with multi-walled carbon nanotubes (MWCNTs) coated with surface molecularly imprinted polymers (MIPs) poly(3-aminophenylboronic acid) (PAPBA) was successfully prepared via potentiodynamic electropolymerization and tested as an effective electrochemical material for epinephrine (EP) detection. The morphology and properties of the sensing material were characterized with scanning electron microscopy and electrochemical impedance spectroscopy. Compared with MWCNTs or non-imprinted polymers PAPBA modified MWCNTs electrodes, the PAPBA(MIPs)/MWCNTs modified electrode showed a lower charge transfer resistance and enhanced electrochemical performance for EP detection. The improved performance can be attributed to the large amount of specific imprinted cavities with boric acid group which can selectively adsorb EP molecule and the synergistic effect between MWCNTs and PAPBA(MIPs). The effects of pH, the molar ratio between monomer and template molecule, the cycle number of electropolymerization, and the accumulation time of the modified electrode on the sensing performance were investigated. It was found that under the optimal conditions, the PAPBA(MIPs)/MWCNTs sensor could effectively recognize EP from many possible interferents of higher concentration within a wide linear range of 0.2-800 mu mol.L-1, with low detection limit of 35 nmol.L-1, high sensitivity and good discrimination. The detection of EP in human serum and real injection samples using the PAPBA(MIPs)/MWCNTs sensor also gave satisfactory results.
机译:通过耐受电力聚聚合物成功制备涂有表面分子印迹聚合物(MIPS)聚(3-氨基苯基硼酸)(MAPBA)的多壁碳纳米管(MWCNT)的纳米复合材料,并作为肾上腺素(EP)检测的有效电化学材料测试。传感材料的形态和性质具有扫描电子显微镜和电化学阻抗光谱的特征。与MWCNT或非印记聚合物PAPBA改性MWCNTS电极相比,PAPBA(MIPS)/ MWCNTS改性电极显示出较低的电荷传递电阻和增强的EP检测电化学性能。改进的性能可以归因于硼酸基团的大量特定印迹腔,其可以选择性地吸附EP分子和MWCNT和PAPBA(MIPS)之间的协同效应。研究了pH,单体与模板分子之间的摩尔比,电聚的循环次数和改性电极对传感性能的累积时间的影响。发现在最佳条件下,PAPBA(MIPS)/ MWCNTS传感器可以有效地识别来自较大浓度的较高线性范围内的较多可能的干扰,低检测限为35 nmol.l-1,高灵敏度和良好的歧视。使用PAPBA(MIPS)/ MWCNTS传感器的人血清和实际喷射样品中的EP检测也得到了令人满意的结果。

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