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Detection of lambda-cyhalothrin by a core-shell spherical SiO2-based surface thin fluorescent molecularly imprinted polymer film

机译:核-壳球形SiO2基表面薄荧光分子印迹聚合物膜检测λ-氟氯氰菊酯

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摘要

A fluorescent core-shell molecularly imprinted polymer based on the surface of SiO2 beads was synthesized and its application in the fluorescence detection of ultra-trace lambda-cyhalothrin (LC) was investigated. The shell was prepared by copolymerization of acrylamide with allyl fluorescein in the presence of LC to form recognition sites. The experimental results showed that the thin fluorescent molecularly imprinted polymer (FMIP) film exhibited better selective recognition ability than fluorescent molecularly non-imprinted polymer (FNIP). A new nonlinear relationship between quenching rate and concentration was found in this work. In addition, the nonlinear relationship allowed a lower concentration range of 0-5.0 nM to be described by the Stern-Volmer equation with a correlation coefficient of 0.9929. The experiment results revealed that the SiO2@FMIP was satisfactory as a recognition element for determination of LC in soda water samples. Therefore this study demonstrated the potential of MIP for the recognition and detection of LC in food.
机译:合成了一种基于SiO2微珠表面的荧光核-壳分子印迹聚合物,并研究了其在超痕量氯氟氰菊酯(LC)荧光检测中的应用。通过在LC存在下使丙烯酰胺与烯丙基荧光素共聚以形成识别位点来制备壳。实验结果表明,荧光分子印迹聚合物(FMIP)薄膜比荧光分子非印迹聚合物(FNIP)具有更好的选择性识别能力。在这项工作中发现了淬灭速率和浓度之间的新的非线性关系。另外,非线性关系使得可以通过Stern-Volmer方程描述一个0-5.0 nM的较低浓度范围,相关系数为0.9929。实验结果表明,SiO2 @ FMIP作为苏打水样品中LC含量的识别元素令人满意。因此,本研究证明了MIP在识别和检测食品中LC方面的潜力。

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