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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Migration behavior and separation of sulfonamides in capillary zone electrophoresis I. Influence of buffer pH and electrolyte modifier
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Migration behavior and separation of sulfonamides in capillary zone electrophoresis I. Influence of buffer pH and electrolyte modifier

机译:磺胺类化合物在毛细管区带电泳中的迁移行为和分离I.缓冲液pH和电解质改性剂的影响

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The influence of buffer pH and electrolyte modifier on the migration behavior and separation of thirteen sulfonamides was investigated by capillary zone electrophoresis. The results indicate that precise optimization of buffer pH is crucial in improving the separation of some closely migrating sulfonamides. On the addition of either an appropriate amount of an organic modifier (methanol or acetonitrile) or a low concentration of beta-cyclodextrin (beta-CD, 0.5 mM) to a phosphate-borate buffer at pH 6.85 and an applied voltage of 20 kV, the resolution of peaks between sulfathiazole and sultamethoxypyridarine is markedly enhanced and effective separations of thirteen sulfonamides are achieved within a relatively short time. Methanol gives better resolution than acetonitrile as an organic modifier. Weak inclusion complexation occurs between beta-CD and sulfonamides, with the exception of sulfathiazole. The formation constants of thirteen sulfonamides with beta-CD are reported.
机译:通过毛细管区带电泳研究了缓冲液pH和电解质改性剂对十三种磺酰胺的迁移行为和分离的影响。结果表明,精确优化缓冲液pH值对于改善某些紧密迁移的磺酰胺的分离至关重要。在pH 6.85和施加电压20 kV的硼酸磷酸盐缓冲液中添加适量的有机改性剂(甲醇或乙腈)或低浓度的β-环糊精(β-CD,0.5 mM)时,磺胺噻唑和磺胺甲氧吡啶胺之间的峰分离度得到了显着提高,并且在相对较短的时间内即可实现十三种磺酰胺的有效分离。甲醇比乙腈作为有机改性剂具有更好的分离度。除磺胺噻唑外,β-CD与磺酰胺之间会发生弱的包合物。报道了十三种磺酰胺与β-CD的形成常数。

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