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Selective recognition in molecularly imprinted polymer and its chromatographic characterization for cinchonine

机译:分子印迹聚合物中的选择性识别及其辛可宁的色谱表征

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A molecularly imprinting polymer (MIP) was synthesized via bulk polymerization under different conditions using anti-ague drug cinchonine (CN) as template. Infrared spectra (IR) results show that the template CN and functional monomer α-methyl acrylic acid (MAA) formed complexes before polymerization and the structure of complexes was simulated by Hyperchem. The results indicate that there are hydrogen bond or ionic bond between functional monomer and template molecule in acetonitrile solution. The MIP made in cold-initiated photo-polymerization has higher separation performance than that in the therm-initiated polymerization. The separation of the isomers CN and cinchonidine (CD) can be successfully obtained when its separate factor α reaches 1. 82. Scatchard analysis suggests that the MIP recognizing CN with two classes of binding sites. The partition coefficient K_(d,1) and apparent maximum number n_(max,1) of binding sites with high affinity are 131. 43 μmol/L and 58. 90 μmol/g, respectively, while K_(d,2) and n_(max,2) of binding sites with low affinity are 2. 32 mmol/L and 169. 08 mmol/g, respectively.
机译:以抗金鸡新碱(CN)为模板,在不同条件下通过本体聚合合成了分子印迹聚合物(MIP)。红外光谱(IR)结果表明,模板CN和功能单体α-甲基丙烯酸(MAA)在聚合之前形成了配合物,并通过Hyperchem模拟了配合物的结构。结果表明乙腈溶液中功能单体与模板分子之间存在氢键或离子键。与热引发聚合相比,冷引发光聚合制备的MIP具有更高的分离性能。当异构体CN和辛可尼定(CD)的分离因子α达到1时,就可以成功分离它们。82. Scatchard分析表明,MIP识别CN具有两类结合位点。具有高亲和力的结合位点的分配系数K_(d,1)和表观最大数量n_(max,1)分别为131. 43μmol/ L和58. 90μmol/ g,而K_(d,2)和低亲和力的结合位点的n_(max,2)分别为2. 32 mmol / L和169. 08 mmol / g。

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