首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >MAXIMIZATION OF SEPARATION EFFICIENCY IN CAPILLARY ELECTROPHORETIC CHIRAL SEPARATIONS BY MEANS OF MOBILITY-MATCHING BACKGROUND ELECTROLYTES
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MAXIMIZATION OF SEPARATION EFFICIENCY IN CAPILLARY ELECTROPHORETIC CHIRAL SEPARATIONS BY MEANS OF MOBILITY-MATCHING BACKGROUND ELECTROLYTES

机译:流动性匹配背景电解质的作用使毛细管电泳手性分离中的分离效率最大化

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摘要

It has been predicted, both theoretically and by computer simulation, that in capillary electrophoresis the electromigration-dispersion-induced peak broadening can be eliminated by matching the mobilities of the analyte and the background electrolyte co-ion. Though mobility matching can be achieved by invoking multiple secondary chemical equilibria in the background electrolyte - such as protonation or complexation - to change the mobility of the co-ion, this approach is not feasible when the composition of the background electrolyte is dictated by the need to achieve a certain separation selectivity. In this paper, a background electrolyte preparation principle is outlined which decouples the dual roles of the background electrolyte, namely the buffering function and the mobility matching function, by ascribing the buffering function solely to the counter-ion (a conjugate acid or conjugate base) and the mobility matching function solely to the co-ion (a strong electrolyte). The power of this approach is demonstrated by solving difficult enantiomer separations.
机译:从理论上和通过计算机模拟已经预测,在毛细管电泳中,通过使分析物的迁移率与背景电解质共离子匹配,可以消除电迁移-分散引起的峰展宽。尽管可以通过在背景电解质中调用多个次级化学平衡(例如质子化或络合)来改变共离子的迁移率来实现迁移率匹配,但是当背景电解质的组成由需要决定时,这种方法不可行达到一定的分离选择性。在本文中,概述了背景电解质的制备原理,该原理通过将缓冲功能仅归因于抗衡离子(共轭酸或共轭碱)来分离背景电解质的双重作用,即缓冲功能和迁移率匹配功能迁移率匹配仅对共离子(强电解质)起作用。通过解决困难的对映异构体分离,证明了这种方法的强大功能。

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