Abstract Mimetic Ag nanoparticle/Zn-based MOF nanocomposite (AgNPs@ZnMOF) capped with molecularly imprinted polymer for the selective detection of patulin
首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Mimetic Ag nanoparticle/Zn-based MOF nanocomposite (AgNPs@ZnMOF) capped with molecularly imprinted polymer for the selective detection of patulin
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Mimetic Ag nanoparticle/Zn-based MOF nanocomposite (AgNPs@ZnMOF) capped with molecularly imprinted polymer for the selective detection of patulin

机译:基于模拟的Ag纳米粒子/ Zn基MOF纳米复合材料(AgNPS @ ZnMOF)用分子印迹聚合物盖上分子印迹聚合物,用于选择性检测Patulin

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AbstractHere, Ag nanoparticle/flake-like Zn-based MOF nanocomposite (AgNPs@ZnMOF) with great peroxidase-like activity was applied as an efficient support for molecularly imprinted polymer (MIP) and successfully used for selective determination of patulin. AgNPs@ZnMOF was simply synthesized by creating Ag nanoparticles (Ag NPs) inside the nano-pores of flake-like (Zn)MOF. The high surface area of MOF remarkably improved the catalytic activity of Ag NPs which was assessed by fluorometric, colorimetric and electrochemical techniques. Furthermore, it was observed that patulin could strangely reduce the catalytic activity of AgNPs@ZnMOF, probably due to its electron capturing features. This outcome was the motivation to design an assay for patulin detection. In order to make a selective interaction with patulin molecules, MIP layer was created on the surface of AgNPs@ZnMOF by co-polymerization reaction of 3-aminopropyl triethoxysilane (APTES) and tetraethyl orthosilicate (TEOS) monomers wherein patulin was applied as template agent. Combination between the selective identifying feature of MIP and outstanding peroxidase-like activity of novel AgNPs@ZnMOF nanocomposite as well as the sensitive fluorescence detection system was led to the design of a reliable probe for patulin. The prepared MIP-capped AgNPs@ZnMOF catalyzed the H2O2-terephthalic acid reaction which produced a high florescent product. In the presence of patulin, the fluorescence intensity was decreased proportional to its concentration in the range of 0.1–10μmolL?1with a detection limit of 0.06μmolL?1. The proposed me
机译:<![cdata [ 抽象 在此处,应用具有巨大过氧化物酶样活性的Ag纳米粒子/片状Zn的MOF纳米复合材料(AgNPS @ ZnMOF)作为有效的支持用于分子印迹聚合物(MIP)并成功用于选择性测定鉴定律。通过在薄片状(Zn)MOF的纳米孔内的Ag纳米颗粒(Ag nps)内产生Agnps @ ZnMOF。 MOF的高表面积显着改善了通过荧光,比色和电化学技术评估的Ag NP的催化活性。此外,观察到Patulin可以奇异地降低Agnps @ Znmof的催化活性,这可能是由于其电子捕获特征。这种结果是设计用于鉴定鉴定检测的测定的动机。为了使Patulin分子进行选择性相互作用,在AgNPS @ ZnMOF的表面上通过共聚合反应而产生MIP层,其通过3-氨基丙基三乙氧基硅烷(Aptes)和四乙基异硅酸盐(TEOS)单体,其中浅素作为模板剂。 MIP的选择性鉴定特征与新型AGNPS @ ZnMOF纳米复合材料的果实和未结过氧化物酶样活性之间的组合,以及敏感荧光检测系统的设计是对鉴定的可靠探针的设计。制备的MIP封端agnps @ Znmof催化H 2 O 2 - 苯二甲酸反应这产生了高荧光产品。在存在鉴定的情况下,荧光强度在0.1-10μmoll 1 -1 / ce:sup>的范围内成比例,其浓度为0.06μmoll?1 。提议我

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