首页> 外文期刊>Analytical chemistry >Molecularly Imprinted Au Nanoparticles Composites on Au Surfaces for the Surface Plasmon Resonance Detection of Pentaerythritol Tetranitrate, Nitroglycerin, and Ethylene Glycol Dinitrate
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Molecularly Imprinted Au Nanoparticles Composites on Au Surfaces for the Surface Plasmon Resonance Detection of Pentaerythritol Tetranitrate, Nitroglycerin, and Ethylene Glycol Dinitrate

机译:Au表面分子印迹金纳米粒子复合材料的表面等离振子共振检测季戊四醇四反硝酸盐,硝酸甘油和乙二醇二硬脂酸酯

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摘要

Molecularly imprinted Au nanoparticles (NPs) composites are generated on Au-coated glass surfaces. The imprinting process involves the electropolymerization of thioaniline-functionalized Au NPs (3.5 nm) on a thioaniline monolayer-modified Au surface in the presence of a carboxylic acid, acting as a template analogue for the respective explosive. The exclusion of the imprinting template from the Au NPs matrix yields the respective imprinted composites. The binding of the analyte explosives to the Au NPs matrixes is probed by surface plasmon resonance spectroscopy, SPR, where the electronic coupling between the localized plasmon of the Au NPs and the surface plasmon wave leads to the amplification of the SPR responses originating from the dielectric changes of the matrixes upon binding of the different explosive materials. The resulting imprinted matrixes reveal high affinities and selectivity toward the imprinted explosives. Using citric acid as an imprinting template, Au NPs matrixes for the specific analysis of pentaerythritol tetranitrate (PETN) or of nitroglycerin (NG) were prepared, leading to detection limits of 200 fM and 20 pM, respectively. Similarly, using maleic acid or fumaric acid as imprinting templates, high-affinity sensing composites for ethylene glycol dinitrate (EGDN) were synthesized, leading to a detection limit of 400 fM for both matrixes.
机译:分子印迹的金纳米颗粒(NPs)复合材料在镀金的玻璃表面上生成。压印过程涉及在羧酸的存在下在硫代苯胺单层改性的Au表面上将硫代苯胺官能化的Au NPs(3.5 nm)电聚合,充当相应炸药的模板类似物。从Au NPs基质中排除印迹模板会产生相应的印迹复合物。通过表面等离振子共振光谱SPR探测分析物炸药与Au NPs基质的结合,其中Au NPs的局部等离激元与表面等离振子波之间的电子耦合导致源自电介质的SPR响应放大结合不同炸药后基质的变化。所得的印迹基质显示出对印迹炸药的高亲和力和选择性。以柠檬酸为印迹模板,制备了用于四季戊四醇四硝酸酯(PETN)或硝酸甘油(NG)特异性分析的Au NPs基质,检测限分别为200 fM和20 pM。同样,使用马来酸或富马酸作为印迹模板,合成了高亲和力的二硝酸乙二醇酯(EGDN)传感复合材料,这两个基质的检测限均为400 fM。

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