首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >COMPARISON OF THE CHIRAL RESOLUTION ON CIS-TRANS ISOMERIC CHIRAL STATIONARY PHASES DERIVED FROM (S)-1-(1-NAPHTHYL)ETHYLAMINE
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COMPARISON OF THE CHIRAL RESOLUTION ON CIS-TRANS ISOMERIC CHIRAL STATIONARY PHASES DERIVED FROM (S)-1-(1-NAPHTHYL)ETHYLAMINE

机译:(S)-1-(1-萘基)乙酰胺衍生的CIS-TRANS异构手性固定相的手性拆分比较

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摘要

A pair of cis-trans isomeric chiral stationary phases (CSPs) derived from (S)-1-(1-naphthyl)ethylamine was prepared. The chromatographic behaviours on both CSPs with regard to the resolution of enantiomeric amino acids, amino alcohols, amines, and carboxylic acid were studied. According to separation factors, the trans-CSP showed better chiral recognition ability for the separation of most analytes chosen in this study. Three homologous series of the alkyl esters of racemic amino acids were resolved on both CSPs using n-hexane-2-propanol and n-hexane-dichloromethane as mobile phases. The trans-CSP also showed better enantioselectivity for the resolution of homologues. A reverse of elution order was observed for the resolution of the homologous series of phenylglycine alkyl esters on both CSPs. It was found that the relationship between the separation factor and the alkyl chain length of the ester homologous series depended upon the components of mobile phase. A higher magnitude of difference between the two CSPs in enantioselectivity for the resolution of a given homologue was obtained when n-hexane-dichloromethane was used as a mobile phase. A chiral recognition process, in which steric repulsion, face-to-face pi-pi interaction, face-to-edge pi-pi interaction and hydrogen bonding interaction were involved, was also suggested to describe the separation of enantiomeric homologues on both CSPs. This study clearly indicates that the chiral resolution is influenced by the geometry of the double bond in a CSP.
机译:制备了一对衍生自(S)-1-(1-萘基)乙胺的顺-反异构手性固定相(CSP)。研究了两种CSP上对映体氨基酸,氨基醇,胺和羧酸的分离色谱行为。根据分离因素,反式CSP对本研究中选择的大多数分析物的分离显示出更好的手性识别能力。使用正己烷-2-丙醇和正己烷-二氯甲烷作为流动相,在两个CSP上拆分了外消旋氨基酸的三个同源系列烷基酯。反式CSP还显示出更好的对映异构体对同系物的选择性。观察到相反的洗脱顺序,表明两个CSP上的苯基甘氨酸烷基酯同源系列的分离度。发现分离因子与酯同源系列的烷基链长之间的关系取决于流动相的组分。当使用正己烷-二氯甲烷作为流动相时,对于给定的同系物,两种CSP在对映选择性方面的差异更大。还提出了一种手性识别过程,其中涉及空间排斥,面对面pi-pi相互作用,面对面pi-pi相互作用和氢键相互作用,以描述两种CSP上对映异构体同系物的分离。这项研究清楚地表明,手性拆分受CSP中双键的几何形状影响。

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