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首页> 外文期刊>Analytica chimica acta >Correlations between the zeta potentials of silica hydride-based stationary phases, analyte retention behaviour and their ionic interaction descriptors
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Correlations between the zeta potentials of silica hydride-based stationary phases, analyte retention behaviour and their ionic interaction descriptors

机译:基于氢化硅的固定相的ζ电势,分析物保留行为及其离子相互作用描述符之间的相关性

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摘要

In this study, the zeta potentials of type-B silica, bare silica hydride, the so-called Diamond Hydride? and phenyl substituted silica hydride stationary phases have been measured in aqueous-organic media and correction procedures developed to account for the more negative zeta potential values in media containing different acetonitrile contents. Retention studies of 16 basic, acidic and neutral compounds were also performed with these four stationary phases with mobile phases containing 0.1% (v/v) formic acid and various acetonitrile-water compositions ranging from 0-90% (v/v) acetonitrile. The retention properties of these analytes were correlated to the corrected stationary phase zeta potentials measured under these different mobile phase conditions with J?2 values ranging from 0.01 to 1.00, depending on the stationary phase and analyte type. Using linear solvation energy relationships, stationary phase descriptors for each stationary phase have been developed for the different mobile phase conditions. Very high correlations of the zeta potentials with the ionic interaction descriptors were obtained for the type-B silica and the Diamond Hydride? phases and good correlation with bare silica hydride material whilst there was no correlation observed for the phenyl substituted silica hydride phase. The nature of the retention mechanisms which gives rise to these different observations is discussed. The described methods represent a useful new approach to characterize and assess the retention properties of silica-hydride based chromatographic stationary phases of varying bonded-phase coverage and chemistries, as would be broadly applicable to other types of stationary phase used in the separation sciences.
机译:在这项研究中,B型二氧化硅,裸露的氢化硅,所谓的金刚石氢化物的ζ电位。已经在水性有机介质中测量了苯甲酸和苯基取代的二氧化硅氢化物固定相的含量,并制定了校正程序以解决含有不同乙腈含量的介质中更负的Zeta电位值的问题。还用这四个固定相进行了16种碱性,酸性和中性化合物的保留研究,流动相中含有0.1%(v / v)甲酸和各种乙腈-水成分为0-90%(v / v)的乙腈。这些分析物的保留特性与在这些不同流动相条件下测得的校正固定相ζ电势相关,取决于固定相和分析物类型,其J?2值范围为0.01至1.00。使用线性溶剂化能量关系,已经针对不同的流动相条件开发了每个固定相的固定相描述符。对于B型二氧化硅和氢化金刚石,获得了Zeta电位与离子相互作用描述符的极高相关性。相与裸露的氢化硅材料具有良好的相关性,而未发现苯基取代的氢化硅相的相关性。讨论了引起这些不同观察结果的保留机制的性质。所描述的方法代表了一种有用的新方法,用于表征和评估键合相覆盖率和化学性质不同的基于氢化硅的色谱固定相的保留特性,因为它将广泛适用于分离科学中使用的其他类型的固定相。

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