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Selectivity in Capillary Electrophoresis: Application to Chiral Separations with Cyclodextrins

机译:毛细管电泳中的选择性:环糊精在手性分离中的应用

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In order to accurately evaluate the performances of any electrolyte medium, a clear concept of selectivity in capillary electrophoresis and related electroseparation techniques is proposed. Selectivity is defined as the ratio 0f the affinity factors of both analytes for a separating agent (phase, pseudophase, or complexing agent present in the background electrolyte). When in the presence of a complexing agent and if only 1:1 complexation occurs, selectivity corresponds to the ratio of the apparent binding constants and is independent of the concentration of the complexing agent. This concept is illustrated through the separations of neutral and anionic, enantiomers in the presence of a cationic cyclodextrin, the mono(6-amino-6-deoxy)-β-cyclodextrin, as a chiral complexing agent. The values obtained for different pairs of enantiomers are discussed with regard to the functional groups that distinguish them. When the analytes have the same mobilities in free solution and in their complexed form, then the resolution equation developed in micellar electrokinetic chromatography may be applied and optimum conditions (affinity factors, chiral agent concentration) can be predicted.
机译:为了准确地评估任何电解质介质的性能,提出了毛细管电泳和相关电分离技术中选择性的明确概念。选择性定义为两种分析物对分离剂(背景电解质中存在的相,假相或络合剂)的亲和因子之比0f。当存在络合剂时,如果仅发生1:1络合,则选择性对应于表观结合常数的比率,并且与络合剂的浓度无关。通过在阳离子环糊精,即单(6-氨基-6-脱氧)-β-环糊精,作为手性络合剂的存在下分离中性和阴离子对映异构体,可以说明这一概念。关于区分它们的官能团,讨论了不同对对映异构体获得的值。当分析物在游离溶液中以其复配形式具有相同的迁移率时,则可以应用在胶束电动色谱中建立的分离方程,并可以预测最佳条件(亲和因子,手性试剂浓度)。

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