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首页> 外文期刊>Journal of separation science. >Comparison of enantioselective HPLC separation of structurally diverse compounds on chiral stationary phases with different teicoplanin coverage and distinct linkage chemistry
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Comparison of enantioselective HPLC separation of structurally diverse compounds on chiral stationary phases with different teicoplanin coverage and distinct linkage chemistry

机译:对映体选择性HPLC分离手性固定相上具有不同替考拉宁覆盖率和键合化学性质的结构多样的化合物的比较

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摘要

Enantioseparation performance of two teicoplanin-based chiral stationary phases, Chirobiotic T and Chirobiotic T2, with different teicoplanin coverage and distinct linkage chemistry was compared. Three structurally diverse groups of analytes, amino alcohols (__-blockers), chlorophenoxypropionic acids, and branched-chain amino acids, in various mobile phase compositions/ separation modes were examined. The amino alcohols showed better enantioresolution on Chirobiotic T2 in reverse-phase, hydrophilic interaction chromatography, and polar-ionic mode separation systems. The best results with these analytes were obtained in the polar-ionic mobile phase. In contrast, the chlorophenoxypropionic acids and the branched-chain amino acids yielded an improved enantioresolution on the chiral stationary phase with lower amount of teicoplanin in the hydrophilic interaction chromatography system. The comparison of separation of the chlorophenoxypropionic acids enantiomers in the reverse-phase and hydrophilic interaction chromatography environments showed completely opposite results. While better enantioresolution of chlorophenoxypropionic acids was achieved on Chirobiotic T2 in mobile phases with low methanol content, high methanol concentration was needed to reach baseline enantioseparation on Chirobiotic T.
机译:比较了两种基于替考拉宁的手性固定相(手性T和手性T2)的对映体分离性能,这些手性固定相具有不同的替考拉宁覆盖率和不同的键合化学性质。在各种流动相组成/分离模式下,分析了三类结构多样的分析物,氨基醇(__阻滞剂),氯苯氧基丙酸和支链氨基酸。在反相,亲水相互作用色谱和极性离子模式分离系统中,氨基醇在Chirobiotic T2上显示出更好的对映体拆分。这些分析物的最佳结果在极性离子流动相中获得。相反,在亲水相互作用色谱系统中,氯苯氧基丙酸和支链氨基酸在手性固定相上的对映体分离度提高,而替考拉宁的含量较低。在反相和亲水相互作用色谱环境中比较氯苯氧基丙酸对映​​异构体的分离结果完全相反。尽管在低甲醇含量的流动相上在Chirobiotic T2上实现了更好的对苯二酚丙酸对映体拆分,但需要高甲醇浓度才能在Chirobiotic T上达到基线对映体分离。

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