首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >EVALUATION OF NEW CHIRAL STATIONARY PHASES OF BONDED CYANURIC CHLORIDE WITH AMINO ACID AND NAPHTHYLALKYLAMINE SUBSTITUENTS FOR LIQUID CHROMATOGRAPHIC SEPARATION OF AMINO ACIDS AND AMINO ALCOHOLS AS DINITROBENZOYL DERIVATIVES
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EVALUATION OF NEW CHIRAL STATIONARY PHASES OF BONDED CYANURIC CHLORIDE WITH AMINO ACID AND NAPHTHYLALKYLAMINE SUBSTITUENTS FOR LIQUID CHROMATOGRAPHIC SEPARATION OF AMINO ACIDS AND AMINO ALCOHOLS AS DINITROBENZOYL DERIVATIVES

机译:氰基和萘基烷基取代胺键合氰基氯化物的新手性平稳相的评价用于液相色谱分离氨基酸和氨基醇作为双对苯二甲酰衍生物的手性

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摘要

Chiral stationary phases (CSPs) with two chiral centers derived from (RIS)-phenylalanyl- and (S)-1-(1-naphthyl)ethylamino-disubstituted cyanuric chloride and the corresponding stationary phases containing one chiral center, by replacing a substituent group attached to the asymmetric center with hydrogen, were prepared for evaluating the enantioseparation of amino acid and amino alcohols as dinitrobenzoyl derivatives. Chiral stationary phases derived from (R)-alanyl- and (S)-1-(1-naphthyl)ethylamino-disubstituted cyanuric chloride were prepared for comparison. The phase (CSP-1) with two chiral centers provides barely satisfactory recognition ability to separate the enantiomers of dinitrobenzoyl (DNB) derivatives of amino acid methyl esters and amino alcohols by high-performance liquid chromatography (HPLC). The chromatographic results show that for a CSP bearing two chiral centers the phenylalanyl moiety dominates the chiral recognition and that the alteration of the absolute configuration of the phenylalanyl moiety from (R)- to (S)-configuration would worsen or even diminish the enantioseparation. The phenyl ring in the phenylalanyl moiety of the CSP seems to exert steric effects instead of acting as a pi-interacting group in chiral recognition. Mechanisms for chiral recognition in liquid chromatography are discussed.
机译:具有两个手性中心的手性固定相(CSP),它们通过取代基取代而衍生自(RIS)-苯丙酰基-和(S)-1-(1-萘基)乙氨基二取代的氰尿酰氯,相应的固定相包含一个手性中心制备了用氢连接至不对称中心的化合物,用于评估作为二硝基苯甲酰基衍生物的氨基酸和氨基醇的对映体分离。制备了衍生自(R)-丙氨酰基-和(S)-1-(1-萘基)乙氨基-二取代的氰尿酰氯的手性固定相用于比较。具有两个手性中心的相(CSP-1)通过高效液相色谱(HPLC)分离氨基酸甲酯和氨基醇的二硝基苯甲酰基(DNB)衍生物的对映异构体几乎没有令人满意的识别能力。色谱结果表明,对于带有两个手性中心的CSP,苯丙氨酰基部分主导着手性识别,并且苯丙氨酰基部分的绝对构型从(R)-变为(S)-构型的改变将使对映体分离变差甚至减少。 CSP的苯丙氨酰基部分中的苯环似乎发挥空间效应,而不是在手性识别中充当pi相互作用基团。讨论了液相色谱中手性识别的机理。

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