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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Novel amino-containing molecularly-imprinted polymer coating on magnetite-gold core for sensitive and selective carbofuran detection in food
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Novel amino-containing molecularly-imprinted polymer coating on magnetite-gold core for sensitive and selective carbofuran detection in food

机译:磁铁矿金芯上的新型氨基的分子印迹聚合物涂层,用于食物中的敏感和选择性碳呋喃检测

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We report a novel and facile method for synthesis of amino-containing molecularly-imprinted coatings on magnetite-gold nanoparticle cores (Fe3O4@Au-MIP-NH2) for constructing robust and sensitive carbofuran sensors. Fe3O4@Au-MIP-NH2 nanoparticles were synthesized by successive self-assembly of organic thiols, 11-mercaptoundecanoic acid, on magnetite-gold core surfaces, followed by coupling with an amino-containing molecularly-imprinted polymer (MIP-NH2) shells. The MIP-NH2 nanocomposite was synthesized via two polymerization steps to form carbofuran imprinted pre-polymer nanoparticles and then terminating the surface with amino-containing polymer. The synthesized pre-polymer nanoparticles possess a large surface-to-volume ratio. This approach allows for increased numbers of carbofuran template molecules to attach to the polymer surface to form larger recognition sites. We constructed the highly sensitive and selective carbofuran amperometric sensor by coating the surface of a glassy carbon electrode with Fe3O4@Au-MIP-NH2 coupled with a simple flow-injection system. Morphological and structural characterization reveals that the coupling of the MIP-NH2 on the Fe3O4@Au core surface significantly increases the recognition surface area and electron transfer efficiency to provide improved selectivity and sensitivity. The MIP-NH2 modified electrode shows substantially enhanced carbofuran current response, which is by a factor of about twenty times that of the non-imprinted polymer electrode. The modified electrode provides fast response with good selectivity when applied to carbofuran detection by amperometry. The carbofuran oxidation-current signal appears at + 0.50 V vs Ag/AgCl, using 0.1 M phosphate buffer (pH 7.0) as the carrier solution. The designed Fe3O4@Au-MIP-NH2 sensor provides a linear response over the range 0.01-100 mu M (r(2) = 0.9967) with a low detection limit of 1.7 nM. The intraday and interday precision (%RSD) of 5 mu M CBF are 1.4% and 1.8%, respectively. We demonstrate the successful application of the sensor to the detection of CBF in fruit and vegetable samples.
机译:我们报告了一种新颖的和容易的方法,用于在磁铁矿 - 金纳米粒子核(Fe3O4 @ Au-MIP-NH2)上合成含氨基的分子印迹涂层,用于构建鲁棒和敏感的碳呋喃传感器。通过在磁铁矿 - 金芯表面上的有机硫醇,11-巯基癸酸的连续自组装中通过连续自组装合成Fe 3 O 4,然后与含氨基的分子印迹聚合物(MIP-NH 2)壳联接。通过两种聚合步骤合成MIP-NH2纳米复合材料,以形成碳呋喃压印的预聚合物纳米颗粒,然后用氨基聚合物终止表面。合成的预聚物纳米颗粒具有大的表面对体积比。该方法允许增加数量的碳呋喃模板分子以连接到聚合物表面以形成更大的识别位点。通过将玻璃碳电极的表面与Fe3O4 @ Au-MIP-NH2与简单的流动喷射系统涂覆,我们通过涂覆高敏感和选择性的碳呋喃电流传感器。形态学和结构表征揭示了MIP-NH2对Fe3O4 //核心表面的耦合显着提高了识别表面积和电子转移效率,以提供改善的选择性和灵敏度。 MIP-NH 2改性电极显示出基本上增强的碳呋喃电流响应,这是非印迹聚合物电极的约二十倍的因子。当通过电流测量施加到Carbofuran检测时,改性电极提供了良好的选择性。用0.1M磷酸盐缓冲液(pH7.0)作为载体溶液,碳呋喃氧化电流信号出现在+ 0.50V Vs Ag / AgCl。设计的FE3O4 @ AU-MIP-NH2传感器在0.01-100 mu m(R(2)= 0.9967)范围内提供线性响应,检测限为1.7nm。 10μmcbf的盘中和白天精度(%RSD)分别为1.4%和1.8%。我们证明了传感器的成功应用于水果和蔬菜样品中CBF的检测。

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