首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Specific cooperative effect for the enantiomeric separation of amino acids using aqueous two-phase systems with task-specific ionic liquids
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Specific cooperative effect for the enantiomeric separation of amino acids using aqueous two-phase systems with task-specific ionic liquids

机译:使用水性两相系统和特定任务离子液体对氨基酸进行对映异构体分离的特殊协同作用

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摘要

Aqueous two-phase systems (ATPS) based on hydrophilic ionic liquid (IL) and inorganic salt solution were designed and prepared for the enantiomeric separation of racemic amino acids. Two different kinds of hydrophilic ionic liquids (IL-1 and IL-2) containing functional groups were synthesized to separate racemic amino acids. Preliminary experiments showed that D-enantiomer of amino acids cooperatively interacted with ILs, which pushed D-enantiomer to remain in the bottom IL-rich phase. By contrast, L-enantiomer was transferred into the top Na2SO4-rich phase. The enantioselectivity of IL-1 was better than that of IL-2 because of their different intermolecular interactions. Various factors influencing separation efficiency were also systematically investigated including extraction time, IL volume and temperature. Furthermore, the mechanism was studied by H-1 NMR and DFT calculations, which showed that the hydrogen bond between the carboxylate and amide groups and the resonance-assisted hydrogen bond between amino and hydroxyl groups conditioned the movement between the residues and ILs. Finally, IL-1 was validated with other general amino acids by the same procedures based on ATPS. (C) 2015 Elsevier B.V. All rights reserved.
机译:设计并制备了基于亲水性离子液体(IL)和无机盐溶液的水两相系统(ATPS),用于外消旋氨基酸的对映体分离。合成了两种含有官能团的亲水性离子液体(IL-1和IL-2)以分离外消旋氨基酸。初步实验表明,氨基酸的D对映体与ILs相互作用,从而促使D对映体保留在底部富含IL的相中。相比之下,L-对映异构体转移到最富Na2SO4的相中。由于IL-1的分子间相互作用不同,因此其对映选择性优于IL-2。还系统地研究了影响分离效率的各种因素,包括提取时间,IL体积和温度。此外,通过H-1 NMR和DFT计算研究了该机理,结果表明,羧酸根和酰胺基之间的氢键以及氨基和羟基之间的共振辅助氢键决定了残基和ILs之间的运动。最后,通过基于ATPS的相同程序,用其他通用氨基酸验证了IL-1。 (C)2015 Elsevier B.V.保留所有权利。

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