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Molecularly Imprinted Polymer Coating with Fluorescence on Magnetic Particle

机译:磁性粒子上的荧光分子印迹聚合物涂层

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In this research, molecular imprinting technology was employed to prepare magnetic, fluorescent molecularly imprinted polymer microspheres (fluorescent M-MIP) for recognition and separation of endocrine disrupting chemicals. The fluorescent M-MIP were prepared using Fe3O4@SiO2 magnetic nanoparticles combined with fluorescein (isothiocyanate) as fluorescent material with the surface molecularly imprinting method. The magnetic fluorescent molecularly imprinted polymers were characterized by fluorescence spectrophotometer, X-ray powder diffraction, vibration sample magnetic field meter, scanning and transmission electron microscopic methods. The results showed that the fluorescent M-MIP not only had excellent superparamagnetism and maintained the crystalline structure of the magnetic nanoparticles, but also stable fluorescence. The recognition selectivity of the magnetic fluorescence polymer was studied for template molecule and analogues. The results indicated that the fluorescent quenches of bisphenol A (the selective target) for fluorescent M-MIP were higher than that of the structural analogues, which illustrated the recognition selectivity for bisphenol A. Simultaneously, the fluorescent magnetic non-imprinted polymers (M-NIPs) had much higher fluorescent quenches than the fluorescent M-NIPs in the processes of rebinding. Therefore, the fluorescent M-MIP technology can be used for the recognition, magnetic separation and detection of bisphenol A by fluorescence spectrometry without any time-consuming elution.
机译:在这项研究中,分子印迹技术被用于制备磁性,荧光分子印迹聚合物微球(荧光M-MIP),以识别和分离破坏内分泌的化学物质。以Fe3O4 @ SiO2磁性纳米粒子与荧光素(异硫氰酸盐)为荧光材料,采用表面分子印迹法制备了荧光M-MIP。通过荧光分光光度计,X射线粉末衍射,振动样品磁场仪,扫描和透射电子显微镜等方法对磁性荧光分子印迹聚合物进行了表征。结果表明,荧光M-MIP不仅具有优异的超顺磁性,并保持了磁性纳米颗粒的晶体结构,而且荧光稳定。研究了磁性荧光聚合物对模板分子及其类似物的识别选择性。结果表明,双酚A(选择性靶标)对荧光M-MIP的荧光猝灭高于结构类似物,说明了对双酚A的识别选择性。同时,荧光磁性非印迹聚合物(M-在重新结合过程中,NIPs具有比荧光M-NIPs高得多的荧光猝灭。因此,荧光M-MIP技术可用于通过荧光光谱法识别,磁性分离和检测双酚A,而无需任何耗时的洗脱。

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