首页> 外文期刊>Chromatographia >HIGHLY SELECTIVE AND EFFICIENT SEPARATIONS OF A WIDE RANGE OF ACIDIC SPECIES IN CAPILLARY ELECTROPHORESIS EMPLOYING NON-AQUEOUS MEDIA
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HIGHLY SELECTIVE AND EFFICIENT SEPARATIONS OF A WIDE RANGE OF ACIDIC SPECIES IN CAPILLARY ELECTROPHORESIS EMPLOYING NON-AQUEOUS MEDIA

机译:使用非水介质的毛细管电泳中酸性物种的高选择性和高效分离

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摘要

The novel application of CE using non-aqueous media has been studied for the separation of a range of acidic compound types. This enabled the first quantitative assay by CE employing non-aqueous media to be performed. Separation selectivity manipulation for closely related species was achieved through variation of organic solvent types and composition, ionic strength changes, alteration of pH* values and the addition of cyclodextrin additives soluble in organic solvents. This offers a greater range of possibilities during method development than use of aqueous buffer. The generation of low operating currents permitted rapid, highly efficient and selective separations to be achieved by applying high field strengths across short capillaries. Optimised rinsing and capillary regenerating procedures were devised which allowed highly repeatable separations to be achieved with migration time repeatability below 1 % RSD. Use of internal standards also allowed 1 %RSD values to be obtained for injection precision. Routine operating effects were assessed and it was observed that stacking effects remain important in non-aqueous CE. Also, optimal separations are obtained when the samples are diluted in the pure solvent used to prepare the electrolyte. The application range of non-aqueous CE was appreciably extended to include acidic drugs, dyes, surfactants and preservatives. [References: 21]
机译:已经研究了使用非水介质的CE的新应用,用于分离多种酸性化合物。这使得能够通过使用非水介质的CE进行首次定量分析。通过改变有机溶剂的类型和组成,离子强度的变化,pH *值的变化以及添加可溶于有机溶剂的环糊精添加剂,可以实现对密切相关物种的选择性分离操作。与使用水性缓冲液相比,这在方法开发过程中提供了更大的可能性。低工作电流的产生允许通过在短毛细管上施加高场强来实现快速,高效和选择性的分离。设计了优化的漂洗和毛细管再生程序,可以实现高度可重复的分离,且迁移时间重复性低于1%RSD。使用内部标准液还可以使注射精度达到1%的RSD值。评估了常规操作效果,并观察到在非水性CE中堆积效果仍然很重要。同样,当样品在用于制备电解质的纯溶剂中稀释时,可获得最佳分离效果。非水CE的应用范围已扩大到包括酸性药物,染料,表面活性剂和防腐剂。 [参考:21]

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