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Capillary Electrokinetic Chromatography Employing p-(Carboxyethyl) calix[n]arenes as Running Buffer Additives

机译:使用对-(羧乙基)杯[n]芳烃作为运行缓冲液添加剂的毛细管电动色谱

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摘要

Calixarenes,a class of macrocyclic phenolic compounds with a basket-like shape, are used as capillary electrophoresis reagents for separations of native and substituted polycyclic aromatic hydrocarbons. The p-(carboxyethyl) calix[n]arenes reported herein are a series kr charged, moderately water soluble macrocyclic molecules that can form complexes with neutral molecules, Electrokinetic chromatographic separations are based kn the differential distribution kf molecules between a running buffer phase, which is transported by electroosmotic flow, and an electrophoretically mediated calixarene. The size of the calixarene influences separation performance, illustrating the importance of cavity size and geometry ia the complexation process, p-(Carboxyethyl) calix[7]arene provides the best efficiency (> 10↑(5) plates/m) and selectivity in these studies. The influences of pH, organic solvent, and field strength on elution range, capacity factors, efficiency, and selectivity are also reported. In general, capacity factors are rather low, but the high charge-to-mass ratios of certain calixarenes produce relatively wide elution ranges. Molecular modeling data and solubility data are used to interpret the observed selectivity.
机译:杯芳烃,一类具有篮状形状的大环酚类化合物,被用作毛细管电泳试剂,用于分离天然和取代的多环芳烃。本文报道的对-(羧乙基)杯[n]芳烃是一系列kr带电荷的中度水溶性大环分子,可以与中性分子形成络合物。电动色谱分离基于运行缓冲相之间的差异分布kf分子,通过电渗流和电泳介导的杯芳烃来转运。杯芳烃的大小影响分离性能,说明在络合过程中,腔尺寸和几何形状的重要性,对-(羧乙基)杯[7]芳烃提供最佳的效率(> 10↑(5)塔板/米)和选择性。这些研究。还报道了pH,有机溶剂和场强对洗脱范围,容量因子,效率和选择性的影响。通常,容量因子相当低,但是某些杯芳烃的高电荷质量比可产生相对较宽的洗脱范围。分子模型数据和溶解度数据用于解释观察到的选择性。

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