首页> 外文期刊>Journal of High Resolution Chromatography >Silver (I)-mediated separations by nonaqueous capillary electrophoresis: Nonaqueous argentation electrophoresis
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Silver (I)-mediated separations by nonaqueous capillary electrophoresis: Nonaqueous argentation electrophoresis

机译:非水毛细管电泳进行银(I)介导的分离:非水成象电泳

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摘要

This study represents the first application of Ag(I) charge transfer complexation in nonaqueous capillary electrophoresis. This method applies the principles of argentation chromatography to nonaqueous electrophoretic separations and is termed "nonaqueous argentation electrophoresis", Since the separations are performed in 100% nonaqueous media, the advantages of nonaqueous solvents, such as enhanced solubility and flexibility in selectivity enhancement, compared to an aqueous or mixed hydroorganic solvent, are realized, A variety of compounds were separated, Qualitatively, the separation of eleven sulfonamides in 100% acetonitrile is shown to improve greatly upon the addition of Ag(I), These results also show that nonaqueous argentation electrophoresis provides fast, well-resolved separations of compounds, such as N-containing heterocyclics, that can selectively complex with Ag(I). Migration data and separation selectivities of these compounds by nonaqueous argentation electrophoresis were compared to previous aqueous argentation electrophoresis results. Selectivities were found to be significantly different for the two separation media. Ag(I) complexation provides an effective means of manipulating selectivity in nonaqueous capillary electrophoresis. [References: 83]
机译:这项研究代表了Ag(I)电荷转移络合物在非水毛细管电泳中的首次应用。该方法将精馏色谱原理应用于非水电泳分离,并称为“非水精馏电泳”。由于分离是在100%非水介质中进行的,因此与非水溶剂相比,非水溶剂的优势在于溶解度和选择性提高。实现了一种水性或混合有机溶剂,定性分离了各种化合物,定性地显示,添加Ag(I)后,在100%乙腈中的11种磺酰胺的分离效果显着提高,这些结果还表明,非水银精制电泳提供了可以很好地分离的化合物(例如含N的杂环)的快速分离方法,这些化合物可以与Ag(I)选择性配合。将这些化合物通过非水银化电泳的迁移数据和分离选择性与先前的水银化电泳结果进行了比较。发现两种分离介质的选择性显着不同。 Ag(I)络合提供了一种在非水毛细管电泳中控制选择性的有效手段。 [参考:83]

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