首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Evaluation of tetraalkylammonium amino acid ionic liquids as chiral ligands in ligand-exchange capillary electrophoresis
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Evaluation of tetraalkylammonium amino acid ionic liquids as chiral ligands in ligand-exchange capillary electrophoresis

机译:氨基铵氨基酸离子液体作为配体交换毛细管电泳的手性配体的评价

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The application of chiral ionic liquids (ILs) in capillary electrophoresis (CE) for enantioseparation has received considerable attention in the past few years; however, the use of chiral ILs as ligands in ligand-exchange capillary electrophoresis (LE-CE) has been reported only in a few papers. In this work, several tetraalkylammonium amino acid ILs (TAA-AAlL5) including tetramethylammonium-L-arginine (TMA-L-Arg), tetramethylammonium-L-proline (TMA-L-Pro) and tetramethylammonium-L-glutamic acid (TMA-L-Glu) were first applied in LE-CE to act as chiral ligands for enantioseparation. The results show that TMA-L-Arg-is an excellent chiral ligand, and able to yield equal or even better resolutions (Rs) in much shorter migration times for most tested analytes compared with previously reported AAlLs ligands or free L-Arg-ligand. Parameters of the new TAA-AAlLs-based LE-CE system such as the alkane chain length of TAA-AAlLs, ILs configuration, ILs concentration, the type and concentration of central metal ion, buffer pH and applied voltage were optimized. Satisfactory enantioseparations were achieved for most selected free- or dansyl-amino acids. The method was then successfully applied to the enantiomeric impurity test of a commercial amino acid sample. This work indicates that the application of TAA-AAlLs as chiral ligands in LE-CE is of great potential for enantioseparation. (C) 2019 Elsevier B.V. All rights reserved.
机译:在毛细管电泳(CE)的对映体的手性离子液体(ILS)的申请已得到相当的重视,在过去的几年里;然而,利用手性离子液体作为配体交换毛细管电泳配体(LE-CE)已报告只在少数的论文。在这项工作中,四烷基铵几个氨基酸ILS(TAA-AAlL5),包括四甲基铵,L-精氨酸(TMA-L-精氨酸),四甲基-L-脯氨酸(TMA-L-Pro)的和四甲基-L-谷氨酸(TMA- L-GLU)在LE-CE被首先施加到充当用于对映体手性配体。结果表明,TMA-L基-Arg-是一个极好的手性配体,和能够与先前报告的AAlLs配体或游离的L-精氨酸 - 配体相比,在更短的迁移时间,以产生等于或甚至更好的分辨率(RS)对大多数测试的分析物。如TAA-AAlLs的烷烃链长度,离子液体的结构,离子液体浓度,类型和中心金属离子的浓度,缓冲液的pH值和施加的电压的新的基于TAA-AAlLs LE-CE系统的参数进行了优化。令人满意的对映体分离物对于大多数选择自由或丹磺酰基 - 氨基酸来实现。该方法然后成功地应用于商用氨基酸样品的对映体杂质的测试。这项工作表明,TAA-AAlLs为LE-CE手性配体的应用是对映体的巨大潜力。 (c)2019 Elsevier B.v.保留所有权利。

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