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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Mechanistic studies on the chiral recognition of polysaccharide-based chiral stationary phases using liquid chromatography and vibrational circular dichroism Reversal of elution order of N-substituted alpha-methyl phenylalanine esters
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Mechanistic studies on the chiral recognition of polysaccharide-based chiral stationary phases using liquid chromatography and vibrational circular dichroism Reversal of elution order of N-substituted alpha-methyl phenylalanine esters

机译:液相色谱和振动圆二色性对基于多糖的手性固定相手性识别的机理研究N-取代的α-甲基苯基丙氨酸酯洗脱顺序的逆转

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Enantiomeric separation of two aromatic x-substituted alanine esters was achieved on two commercially available polysaccharide-based chiral stationary phases (CSP_s): amylose tris(3,5 dimethylphenylcarbamate) (ADMPC) and cellulose tris(3,5-dimethylphenylcarbamate) (CDMPC). The interactions between enantiomeric analytes and the CSP_s were investigated using chromatographic methods and vibration circular dichroism (VCD). The two analytes differ on the aromatic portion of the molecules where one analyte has a π-acceptor aromatic ring (1) while the other has a π-donor aromatic ring (2). When an ADMPC CSP was employed, an increase in the polarity of the mobile phase leads to a reversal of the elution order for the two enantiomers of 1. The elution order of compound 2 was not affected by the polarity of the mobile phase. In order to gain an understanding of these phenomena, the enantiomeric separation of 1 and 2 was also performed on the CDMPC CSP Interestingly, no reversal of elution order was observed upon the chromatographic separation of both pairs of enantiomers of compounds 1 and 2 upon increasing the solvent polarity when a CDMPC CSP was utilized. To understand the underlying mechanism governing these chiral separations, VCD was applied to study the structure of the ADMPC and CDMPC polymers and their conformational behaviors under chromatographic conditions. For the first time the conformations of the side chains of both polymers were revealed based on the VCD spectra along with OFT calculations. Furthermore, the interactions between the two analytes and the two CSP_s were directly probed by VCD. By comparing the spectral differences of the two CSP_s in the presence of the two analytes, the detailed interactions involving different functional groups associated with the chiral recognition were elucidated and thus explained the unusual reversal of elution order associated with increasing solvent polarity.
机译:在两种市售的基于多糖的手性固定相(CSP_s)上实现了两种芳香族x-取代的丙氨酸酯的对映体分离:直链淀粉三(3,5-二甲基苯基氨基甲酸酯)和纤维素三(3,5-二甲基苯基氨基甲酸酯)(CDMPC) 。使用色谱方法和振动圆二色性(VCD)研究了对映体分析物与CSP_s之间的相互作用。两种分析物在分子的芳族部分上有所不同,其中一种分析物具有π受体芳香环(1),而另一种具有π供体芳香环(2)。当使用ADMPC CSP时,流动相极性的增加导致两种对映体1的洗脱顺序颠倒。化合物2的洗脱顺序不受流动相极性的影响。为了了解这些现象,还对CDMPC CSP进行了1和2的对映体分离。有趣的是,当化合物1和2的两对对映体色谱分离增加时,洗脱顺序均未观察到逆转。使用CDMPC CSP时的溶剂极性。为了了解控制这些手性分离的潜在机理,使用了VCD来研究ADMPC和CDMPC聚合物的结构及其在色谱条件下的构象行为。首次基于VCD光谱和OFT计算揭示了这两种聚合物的侧链构象。此外,VCD直接检测了两种分析物与两种CSP_s之间的相互作用。通过比较两种分析物存在下两种CSP_s的光谱差异,阐明了涉及与手性识别相关的不同官能团的详细相互作用,从而解释了与溶剂极性增加相关的洗脱顺序的异常逆转。

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