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Reflux precipitation polymerization : a new synthetic insight in molecular imprinting at high temperature

机译:回流沉淀聚合:高温下分子印迹的合成新见解

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摘要

Synthesis of uniform molecularly imprinted polymer (MIP) microspheres (MSs) using distillation precipitation polymerization (DPP) at high temperature has attracted great interest in the field of molecular imprinting. However,there were still some shortcomings in this method. In this work, to create uniform MIP MSs in a short time and to demonstrate the effects of high temperature on imprinting performance, a new precipitation polymerization method (reflux precipitation polymerization, RPP) was used for the first time to fabricate MIP MSs in this study. The SEM images of the polymeric MSs indicate the presence of template molecules could improve the particle morphology and size uniformity. The specific molecular recognition of the monodispersed MIP MSs was confirmed by fluorescence measurement and HPLC-UV analysis. The binding behavior of the MIP MSs was simulated using the heterogeneous Freundlich isotherm, which shows that the MIP MSs produced by the RPP possess compatible selectivity in comparison with those by traditional PP method. It is noted that, for the first time, we demonstrated that molecular imprinting at high temperature was only successful when electrostatic interactions played important roles in the imprinting process.
机译:在高温下使用蒸馏沉淀聚合(DPP)合成均匀的分子印迹聚合物(MIP)微球(MSs)在分子印迹领域引起了极大的兴趣。但是,这种方法仍然存在一些缺陷。在这项工作中,为了在短时间内创建均匀的MIP MS并演示高温对压印性能的影响,本研究首次首次使用新的沉淀聚合方法(回流沉淀聚合,RPP)来制造MIP MS 。聚合物MS的SEM图像表明模板分子的存在可以改善颗粒形态和尺寸均匀性。通过荧光测量和HPLC-UV分析确认了单分散MIP MS的特异性分子识别。利用异质弗氏等温线模拟了MIP MS的结合行为,这表明与传统的PP方法相比,RPP生产的MIP MS具有兼容的选择性。值得注意的是,我们首次证明,只有当静电相互作用在印迹过程中发挥重要作用时,高温下的分子印迹才会成功。

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