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核壳结构纳米分子印迹荧光化学传感器用于选择性检测莠去津除草剂。

Core-shell nanostructured molecular imprinting fluorescent chemosensor for selective detection of atrazine herbicide.

机构信息

Institute of Intelligent Machines, Chinese Academy of Science, Hefei, Anhui 230031, China.

出版信息

Analyst. 2011 Jan 7;136(1):184-90. doi: 10.1039/c0an00447b. Epub 2010 Oct 1.

Abstract

To convert the binding events on molecularly imprinted polymers (MIPs) into physically detectable signals and to extract the templates completely are the great challenges in developing MIP-based sensors. In this paper, a core-shell nanostructure was employed in constructing the MIP chemosensor for the improvements of template extraction efficiency and imprinted sites accessibility. Vinyl-substituted zinc(II) protoporphyrin (ZnPP) was used as both fluorescent reporter and functional monomer to synthesize atrazine-imprinted polymer shell at silica nanoparticle cores. The template atrazine coordinates with the Lewis acid binding site Zn of ZnPP to form a complex for the molecular imprinting polymerization. These imprinted sites are located in polymer matrix of the thin shells (~8 nm), possessing better accessibility and lower mass-transfer resistance for the target molecules. The fluorescence properties of ZnPP around the imprinted sites will vary upon rebinding of atrazine to these imprinted sites, realizing the conversion of rebinding events into detectable signals by monitoring fluorescence spectra. This MIP probe showed a limit of detection (LOD) of about 1.8 μM for atrazine detection. The core-shell nanostructured MIP method not only improves the sensitivity, but also shows high selectivity for atrazine detection when compared with the non-molecular imprinted counterparts.

摘要

将分子印迹聚合物(MIP)上的结合事件转化为可物理检测的信号,并完全提取模板,这是开发基于 MIP 的传感器的巨大挑战。在本文中,采用核壳纳米结构来构建 MIP 化学传感器,以提高模板提取效率和印迹位点的可及性。乙烯基取代的锌(II)原卟啉(ZnPP)既可用作荧光报告基团,也可用作功能单体,在硅纳米颗粒核上合成了莠去津印迹聚合物壳。模板莠去津与 ZnPP 的路易斯酸结合位点 Zn 配位,形成用于分子印迹聚合的配合物。这些印迹位点位于薄壳 (~8nm) 的聚合物基质中,对目标分子具有更好的可及性和更低的传质阻力。印迹位点周围 ZnPP 的荧光性质会在莠去津重新结合到这些印迹位点时发生变化,通过监测荧光光谱,实现将结合事件转化为可检测的信号。该 MIP 探针对莠去津的检测限(LOD)约为 1.8μM。与非分子印迹对照物相比,核壳纳米结构的 MIP 方法不仅提高了灵敏度,而且对莠去津检测具有高选择性。

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