首页> 外文期刊>Bulletin of the Korean Chemical Society >Liquid Chromatographic Resolution of N-(3,5-Dinitrobenzoyl)-¥á-amino Acids
on a New Chiral Stationary Phase: the First Liquid Chromatographic Utilization of
a Double-Ureide Pocket for the Recognition of Chiral Carboxylate Anions
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Liquid Chromatographic Resolution of N-(3,5-Dinitrobenzoyl)-¥á-amino Acids
on a New Chiral Stationary Phase: the First Liquid Chromatographic Utilization of
a Double-Ureide Pocket for the Recognition of Chiral Carboxylate Anions

机译: N - (3,5-二硝基苯) - ¥Á-氨基酸的液体色谱分辨率关于新的手性固定相:第一种液体色谱利用双硫化物口袋识别手性羧酸盐阴离子

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摘要

An HPLC chiral stationary phase (CSP) which has only two ureide functional groups was prepared starting from (1S,2S)-1,2-diaminocyclohexane. The CSP was successful in the resolution of various N-(3,5- dinitrobenzoyl)-メ-amino acids, the separation (メ) and the resolution factors (RS) being within the range of 1.11-1.35 and 2.19-5.17, respectively with the use of 20% 2-propanol in hexane containing 0.1% trifluoroacetic acid as a mobile phase. However, ethyl esters of N-(3,5-dinitrobenzoyl)-メ-amino acids were not resolved or resolved with only marginal separation and resolution factors on the CSP under the identical mobile phase condition. From these results, the complexation of the carboxylate anions of analytes inside the double-ureide pocket of the CSP was expected to play some important role for the chiral recognition. In contrast, N-(3,5- dinitrobenzoyl)-メ-amino acid N-propylamides were resolved on the CSP with reasonable separation and resolution factors. Enantioselective hydrogen bonding interactions between analytes and the CSP were presumed to be responsible for these resolutions.
机译:从(1S,2S)-1,2-二氨基环己烷开始,制备仅具有两种硫化物官能团的HPLC手性固定相(CSP)。 CSP在分离各种 n - (3,5-二硝基苯甲酰基) - α-氨基酸,分离(メ)和分辨率因子(Rs)的范围内,在1.11- 1.35和2.19-5.17,分别在含有0.1%三氟乙酸的己烷中使用20%2-丙醇作为流动相。然而,在相同的流动相位条件下,在相同的流动相位条件下,没有解决或分辨或分解 n - (3,5-二硝基苯甲酰基) - α氨基酸的乙酯。从这些结果中,预计将在CSP的双硫化物袋内分析物的羧酸盐阴离子的络合将对手性识别作出一些重要作用。相比之下,在CSP上分离具有合理分离和分辨因子的CSP中,将 N - (3,5-二硝基苯甲酰) - (3,5-二硝基苯甲酰) - メ氨基酸 N-propylamides。分析物和CSP之间的映选择性氢键相互作用被推测为这些分辨率的负责。

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