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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Experimental and theoretical studies on the enantioselectivity of molecularly imprinted polymers prepared with a chiral functional monomer
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Experimental and theoretical studies on the enantioselectivity of molecularly imprinted polymers prepared with a chiral functional monomer

机译:用手性功能单体制备的分子印迹聚合物的对映选择性的实验和理论研究

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摘要

A comprehensive study on the enantioseparation of racemic bis[1-phenylethyl]amine (PEA) on a series of molecularly imprinted polymers (MIPs) prepared using the chiral functional monomer (S)-2-(2-methyl-acryloylamino)-3-phenyl propionic acid (MAPP) is reported. MIP-R, MIP-S and MIP-RS, were synthesized separately by imprinting the pure enantiomers (R-, S-PEA) and racemic PEA, respectively, MAPP, EDGMA as crosslinker and chloroform as the porogen. It was found that all MIPs prepared were able to resolve the PEA racemate. Residence times (t _r) and enantioselectivity factors (α) were estimated from typical elution chromatography experiments. Frontal chromatography experiments were conducted to acquire the adsorption isotherms for both enantiomers on the different MIPs (and on the non-imprinted polymer, NIP). The adsorption isotherms were analyzed using the affinity spectrum (AS) and the expectation-maximization (EM) methods. The study also involved the theoretical evaluation of the MAPP/enantiomers interactions in the pre-polymer mixture. The EM method predicts mono- and bimodal distribution of affinity binding sites depending upon the polymer analyzed. Apparently, the enantioseparation process depends on relatively small differences in the stabilization of the diasteroisomeric ion-pairs PEA/MAPP complexes on the surface of the polymers.
机译:外消旋双[1-苯基乙基]胺(PEA)在一系列使用手性功能单体(S)-2-(2-甲基-丙烯酰氨基)-3-制备的分子印迹聚合物(MIP)上的对映体分离的综合研究报告了苯基丙酸(MAPP)。 MIP-R,MIP-S和MIP-RS分别通过分别印记纯对映体(R-,S-PEA)和外消旋PEA合成,MAPP,EDGMA作为交联剂,氯仿作为致孔剂。发现所有准备好的MIP都能够解决PEA外消旋物。从典型的洗脱色谱实验中估计了停留时间(t _r)和对映选择性因子(α)。进行了正面色谱实验,以获取两种对映异构体在不同MIP(以及非印迹聚合物NIP)上的吸附等温线。使用亲和谱(AS)和期望最大化(EM)方法分析吸附等温线。该研究还涉及对预聚物混合物中MAPP /对映异构体相互作用的理论评估。 EM方法根据所分析的聚合物预测亲和结合位点的单峰和双峰分布。显然,对映体分离过程取决于聚合物表面上非对映异构体离子对PEA / MAPP配合物的稳定性的较小差异。

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