首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Dedicated comparisons of diverse polysaccharide- and zwitterionic Cinchona alkaloid-based chiral stationary phases probed with basic and ampholytic indole analogs in liquid and subcritical fluid chromatography mode
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Dedicated comparisons of diverse polysaccharide- and zwitterionic Cinchona alkaloid-based chiral stationary phases probed with basic and ampholytic indole analogs in liquid and subcritical fluid chromatography mode

机译:液体和亚临界流体色谱模式中基于碱性和两性吲哚类似物探测基于多种多二二二乘糖和两性离子和两性离子池碱的手性固定相的专用比较

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摘要

Normal phase (NP) high-performance liquid and sub- and supercritical fluid chromatographic (both acronymed as SFC) methods have been developed for the enantiomer separation of three basic and three ampholytic structurally related C-3-substituted indole analogs on seven non-ionic (neutral) polysaccharide-based and two chemically entirely different zwitterionic Cinchona alkaloid- and sulfonic acid-based chiral stationary phases (CSPs). In a systematic fashion the effect of the composition of the mobile phase, the nature of the alcohol and amine additives on the retention characteristics and enantioselectivity of the ionizable analytes were investigated. On all studied polysaccharide-based CSPs the three ampholytes remained unretained in NP-LC mode, while they were nicely retained and resolved in SFC mode. These unexpected results underline a specific property of liquid CO2 as bulk solvent in combination with alcohols as co-solvents and amine additives thus creating an environment around the chiral selector sites which support the retention of ampholytes. The zwitterionic CSPs worked equally well for the resolution of the basic and ampholytic analytes using a polar ionic mobile phase in both LC and SFC modes.
机译:正相(NP)高效液相和子和超临界流体色谱(既作为acronymed SFC)的方法已被用于三个基本和三个两性结构相关的C-3取代的吲哚类似物对七个非离子型的对映体分离开发(中性)多糖为基础,两种化学上完全不同的两性离子金鸡纳生物碱和磺酸类手性固定相(CSP的)。以系统的方式流动相的组合物的效果,所述醇的可电离的分析物的性质和对保持特性胺添加剂和对映选择性的影响。在所有研究了基于多糖的CSP三个两性电解质仍然未保留在NP-LC模式,而他们很好地保留和SFC模式解决。这些意想不到的结果强调液体CO 2作为与醇作为共溶剂和胺添加剂从而产生围绕该支持两性电解质的保留手性选择位点的环境中组合大量溶剂的特定属性。两性离子的CSP工作同样出色的使用LC和SFC模式的极性离子流动相的基本和两性分析物的分辨率。

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