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在固液两相体系中,使用基于咪唑鎓二价阳离子的手性离子液体对消旋苯丙氨酸进行高分辨率分离。

High resolution of racemic phenylalanine with dication imidazolium-based chiral ionic liquids in a solid-liquid two-phase system.

作者信息

Huang Xiaoxia, Wu Haoran, Wang Zhixia, Luo Yingjie, Song Hang

机构信息

School of Chemical Engineering, Sichuan University, Chengdu, 610065, PR China.

School of Chemical Engineering, Sichuan University, Chengdu, 610065, PR China.

出版信息

J Chromatogr A. 2017 Jan 6;1479:48-54. doi: 10.1016/j.chroma.2016.12.012. Epub 2016 Dec 8.

Abstract

A novel solid-liquid two-phase system was developed for the chiral separation of racemic phenylalanine with new dication imidazolium-based chiral ionic liquids. Preliminary experiments showed distinct enantioselectivity in amino acid extraction with the novel solid-liquid two-phase system, more L-enantiomer of amino acid cooperatively interacted with ionic liquids and copper ions to be the solid phase. Various factors, including the alkyl chain length of cations of ionic liquids, the amount of copper acetate, the ratio of n/n, the amount of water and racemic phenylalanine, the resolution time together with the resolution temperature, were systematically investigated for their influence on resolution efficiency. The results showed that, under a certain condition, the enantiomeric excess value and the yield of phenylalanine in liquid phase (mainly containing D-enantiomer) were 67.8% and 96.5%, the enantiomeric excess value and the yield of phenylalanine in solid phase (mainly containing L-enantiomer) were 99.2% and 85.2%. Finally, 2D NMR technology, infrared spectroscopy and molecular simulation method were used to study the interaction mechanism. The results indicated that L-enantiomer of phenylalanine interacts more strongly with chiral ILs and Cu. The novel system has characteristics of free-organic solvent, simple operation, fast separation process and very high resolution efficiency for racemic phenylalanine. This work could provide a new and alternative resolution approach for other chiral separations.

摘要

开发了一种新型固液两相体系,用于用新型基于咪唑鎓的双阳离子手性离子液体对消旋苯丙氨酸进行手性拆分。初步实验表明,该新型固液两相体系在氨基酸萃取中具有明显的对映选择性,更多的氨基酸L-对映体与离子液体和铜离子协同相互作用形成固相。系统研究了各种因素,包括离子液体阳离子的烷基链长度、醋酸铜的用量、n/n比、水和消旋苯丙氨酸的用量、拆分时间以及拆分温度对拆分效率的影响。结果表明,在一定条件下,液相(主要含D-对映体)中苯丙氨酸的对映体过量值和产率分别为67.8%和96.5%,固相中(主要含L-对映体)苯丙氨酸的对映体过量值和产率分别为99.2%和85.2%。最后,采用二维核磁共振技术、红外光谱和分子模拟方法研究了相互作用机理。结果表明,苯丙氨酸的L-对映体与手性离子液体和铜的相互作用更强。该新型体系具有无有机溶剂、操作简单、分离过程快速以及对消旋苯丙氨酸拆分效率非常高的特点。这项工作可为其他手性拆分提供一种新的替代拆分方法。

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