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首页> 外文期刊>Journal of Applied Polymer Science >Grafting of molecularly imprinted polymers from the surface of Fe _3O_4 nanoparticles containing double bond via suspension polymerization in aqueous environment: A selective sorbent for theophylline
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Grafting of molecularly imprinted polymers from the surface of Fe _3O_4 nanoparticles containing double bond via suspension polymerization in aqueous environment: A selective sorbent for theophylline

机译:在水性环境中通过悬浮聚合从含双键的Fe _3O_4纳米粒子的表面上嫁接分子印迹聚合物:茶碱的选择性吸附剂

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Molecularly imprinted polymers (MIPs) were grafted from the surface of Fe_3O_4 nanoparticles containing double bond via suspension polymerization in aqueous environment, and the leakage of Fe3O 4 nanoparticles from MIPs was overcome in this study. The effect of different cross-linker on adsorption capacity of the resultant magnetic MIPs was investigated using pure trimethylolpropane trimethacrylate (TRIM) or the mixture of TRIM and divinylbenzene (DVB) as cross-linker. Both magnetic MIPs exhibited higher adsorption capacity for the template theophylline than the corresponding non-imprinted polymer, and Freundlich model fitted reasonably well for theophylline adsorption on both magnetic MIPs. In addition, both magnetic MIPs exhibited good recognition properties for the template theophylline versus caffeine, and the selectivity of magnetic MIPs using pure TRIM as cross-linker (mag-MIP-TRIM) was much higher than those using the mixture of TRIM and DVB as cross-linker (mag-MIP-TRIM and DVB). The adsorption dynamics of theophylline on both magnetic MIPs fitted well with the first-order kinetic model, but the adsorption equilibrium on mag-MIP-TRIM and DVB reached faster than that on mag-MIP-TRIM.
机译:通过在水性环境中通过悬浮聚合从含有双键的Fe_3O_4纳米颗粒的表面接枝了分子印迹聚合物(MIPs),克服了Fe3O 4纳米颗粒从MIPs泄漏的问题。使用纯三羟甲基丙烷三甲基丙烯酸酯(TRIM)或TRIM和二乙烯基苯(DVB)的混合物作为交联剂,研究了不同交联剂对所得磁性MIP吸附容量的影响。两种磁性MIP对模板茶碱的吸附能力均高于相应的非印迹聚合物,并且Freundlich模型对两种磁性MIP的茶碱吸附均具有较好的拟合度。此外,两种磁性MIP对模板茶碱与咖啡因均表现出良好的识别性能,并且使用纯TRIM作为交联剂(mag-MIP-TRIM)的磁性MIP的选择性比使用TRIM和DVB的混合物作为磁性MIP的选择性高得多。交联器(mag-MIP-TRIM和DVB)。茶碱在两种磁性MIPs上的吸附动力学均与一阶动力学模型吻合,但在mag-MIP-TRIM和DVB上的吸附平衡比在mag-MIP-TRIM上更快。

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