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Ampholytes as background electrolytes in capillary zone electrophoresis: Sense or nonsense? Histidine as a model ampholyte

机译:两性电解质在毛细管区带电泳中作为背景电解质:有道理还是无意义?组氨酸作为模型两性电解质

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A lot of phenomena, occuring in capillary zone electrophoresis (CZE), are linked with the ionic concentration of the background electrolyte (BGE). If weak bases and acids are used as BGEs in CZE, at a pH where they are scarcely ionized, the ionic concentration of the BGE is very low and this brings a strong peak broadening, limited sample stacking and low sample load. Because the electromigration dispersion increases extremely, moreover, the existence of low-conductivity BGEs in CZE is a contradiction in terms. The behavior of ampholytes as BGE in CZE is examined, by means of histidine as a model ampholyte. For BGEs consisting of histidine, important parameters, including the ionic concentrations, buffer capacity, transfer ratio, and the indicator for electromigration dispersion E(1)m(1)/E(2)m(2), are calculated at various pH. Although the transfer ratio is fairly constant over the whole pH traject, the ionic concentration and buffer capacity decrease whereas the electromigration dispersion strongly increases near the pl of histidine. Le., that ampholytes can be applied as BGEs in CZE, however, just not at pH near their pl value, except as the difference between the pK values of the basic and acidic group, the DeltapK value, is very small. For ampholytes with a low DeltapK value or at high concentrations, all the before-mentioned effects are less fatal, but in that case we can not speak of a real low-conductivity BGE. If ampholytes are used at pH near their pK values, the use of ampholytes as BGE is not advantageously compared with simple weak bases and acids. This has been confirmed by calculations and experiments. [References: 20]
机译:毛细管区带电泳(CZE)中发生的许多现象与背景电解质(BGE)的离子浓度有关。如果将弱碱和弱酸用作CZE中的BGE,则在它们几乎不被离子化的pH值下,BGE的离子浓度非常低,这会导致强峰展宽,样品堆积受限和样品负载低。而且,由于电迁移分散极大地增加,因此CZE中低电导性BGE的存在是矛盾的。通过组氨酸作为模型两性电解质,检查了两性电解质在CZE中作为BGE的行为。对于由组氨酸组成的BGE,需要在各种pH值下计算重要参数,包括离子浓度,缓冲液容量,转移率和电迁移分散度的指标E(1)m(1)/ E(2)m(2)。尽管在整个pH轨迹上转移率是相当恒定的,但离子浓度和缓冲容量却降低了,而电迁移分散液在组氨酸的p1附近却大大增加。例如,该两性电解质可以用作CZE中的BGE,但是,除了在碱性基团和酸性基团的pK值之间的差异(DeltapK值)很小以外,不能在接近其pl值的pH值下使用。对于具有低DeltapK值或高浓度的两性电解质,上述所有作用均不那么致命,但是在那种情况下,我们无法说出真正的低电导性BGE。如果在接近其pK值的pH值下使用两性电解质,则与简单的弱碱和酸相比,两性电解质作为BGE的使用不利。通过计算和实验已经证实了这一点。 [参考:20]

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