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Fabrication of Hypericin Imprinted Polymer Nanospheres via Thiol-Yne Click Reaction

机译:通过Thiol-yne Click反应制备金刚素印迹聚合物纳米球

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To fabricate molecularly imprinted polymer nanospheres via click reaction, five different clickable compounds were synthesized and two types of click reactions (azide-alkyne and thiol-yne) were explored. It was found that molecularly imprinted polymer nanospheres could be successfully synthesized via thiol-yne click reaction using 3,5-diethynyl-pyridine (1) as the monomer, tris(3-mercaptopropionate) (tri-thiol, 5) as the crosslinker, and hypericin as the template (MIP–NSHs). The click polymerization completed in merely 4 h to produce the desired MIP–NSHs, which were characterized by FTIR, SEM, DLS, and BET, respectively. The reaction conditions for adsorption capacity and selectivity towards hypericin were optimized, and the MIP–NSHs synthesized under the optimized conditions showed a high adsorption capacity (Q = 6.03 μmol?g?1) towards hypericin. The imprinting factors of MIP–NSHs towards hypericin, protohypericin, and emodin were 2.44, 2.88, and 2.10, respectively.
机译:为了通过咔哒反应制造分子印迹聚合物纳米球,合成了五种不同的可点球化合物,探讨了两种类型的咔哒反应(叠氮化物 - 炔烃和硫醇-YNE)。发现分子印迹聚合物纳米球可以通过使用3,5-二乙炔基 - 吡啶(1)作为单体,Tris(3-巯基丙酸酯)(Tri-Thiol,5)作为交联剂,以便成功地合成Chiol-Yne-Yne Click反应。和金丝酰一样模板(MIP-NSH)。只需4小时就完成了咔哒聚合以产生所需的MIP-NSH,其特征在于FTIR,SEM,DLS和BET。优化了吸附能力和选择性的反应条件,并在优化条件下合成的MIP-NSH显示出高吸附能力(Q =6.03μmol≤1)朝向高蛋白。 MIP-NSHS对金刚素,原生素和大蛋白的印迹因素分别为2.44,2.88和2.10。

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