首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >QUANTITATIVE DESCRIPTION OF ANALYTE MIGRATION BEHAVIOR BASED ON DYNAMIC COMPLEXATION IN CAPILLARY ELECTROPHORESIS WITH ONE OR MORE ADDITIVES
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QUANTITATIVE DESCRIPTION OF ANALYTE MIGRATION BEHAVIOR BASED ON DYNAMIC COMPLEXATION IN CAPILLARY ELECTROPHORESIS WITH ONE OR MORE ADDITIVES

机译:基于动态络合的一种或多种添加剂在毛细管电泳中分析物迁移行为的定量描述

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摘要

A comprehensive theory is proposed to describe the migration behavior of analytes in capillary electrophoresis (CE) when one or more additives are present in the buffer solution. This theory amalgamates and extends the previous work done by others. The capacity factor (k') in this theory is defined as the product of the equilibrium constant and the additive concentration, thus, k' changes linearly with additive concentration, The net electrophoretic mobility of an analyte is a function of k', therefore, it can be changed by varying the additive concentration. Three parameters are needed to predict the mobility of an analyte in a one-additive CE system: the mobility of the free analyte, the mobility of the complex, and the equilibrium constant for the analyte-additive interaction (which determines the fraction of the free analyte at different additive concentrations). When additives are used, the change in viscosity obscures this relationship, therefore, a viscosity correction factor is required to convert all mobilities to an ideal state where the viscosity remains constant. The migration behavior of an analyte in a solution with multiple additives can be predicted and controlled, once the equilibrium constants of the interactions between the analyte and each of the additives are obtained separately. beta-Cyclodextrin and hydroxypropyl-beta-cyclodextrin are used as additives and the migration behavior of phenol, p-nitrophenol, and benzoic acid are studied as a model system to verify this theory. When the necessary viscosity correction factor is included, the net electrophoretic mobilities of the analytes obtained from experimental results agree with the values predicted by the theory based on dynamic complexation. Although only experiments with one and two additives were carried out to verify the theory, the equations apply to situations when more than two additives are used. The relationship between the theories of electrophoresis and chromatography is clarified. [References: 28]
机译:提出了一种综合理论来描述当缓冲溶液中存在一种或多种添加剂时,分析物在毛细管电泳(CE)中的迁移行为。该理论融合并扩展了其他人之前所做的工作。该理论中的容量因子(k')定义为平衡常数与添加剂浓度的乘积,因此k'随添加剂浓度线性变化。分析物的净电泳迁移率是k'的函数,因此,可以通过改变添加剂浓度来改变。需要使用三个参数来预测一添加剂CE系统中分析物的迁移率:游离分析物的迁移率,配合物的迁移率以及分析物与添加剂相互作用的平衡常数(确定游离态的分数)。被分析物在不同的添加剂浓度下)。当使用添加剂时,粘度的变化掩盖了这种关系,因此,需要粘度校正因子以将所有迁移率转化为粘度保持恒定的理想状态。一旦分别获得分析物和每种添加剂之间相互作用的平衡常数,就可以预测和控制分析物在具有多种添加剂的溶液中的迁移行为。使用β-环糊精和羟丙基-β-环糊精作为添加剂,并以苯酚,对硝基苯酚和苯甲酸的迁移行为为模型系统,以验证该理论。当包括必要的粘度校正因子时,从实验结果获得的分析物的净电泳迁移率与基于动态络合的理论预测的值一致。尽管仅使用一种和两种添加剂进行了实验,以验证该理论,但该方程式适用于使用两种以上添加剂的情况。阐明了电泳理论与色谱理论之间的关系。 [参考:28]

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