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首页> 外文期刊>Analytical chemistry >RETENTION BEHAVIOR OF IONIZABLE ISOMERS IN REVERSED PHASE LIQUID CHROMATOGRAPHY - A COMPARATIVE STUDY OF POROUS GRAPHITIC CARBON AND OCTADECYL BONDED SILICA
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RETENTION BEHAVIOR OF IONIZABLE ISOMERS IN REVERSED PHASE LIQUID CHROMATOGRAPHY - A COMPARATIVE STUDY OF POROUS GRAPHITIC CARBON AND OCTADECYL BONDED SILICA

机译:反相液相色谱中可电离异构体的保留行为-多孔石墨碳和十八烷基键合硅胶的比较研究

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摘要

The retention behaviors of 36 positional isomers of ionizable substituted benzene compounds have been compared on two different packing materials: porous graphitic carbon (PGC) and octadecyl bonded silica (ODS) using 35% aqueous acetonitrile as the mobile phase. The effect of the mobile phase pH on the solute retention was studied over a range of pH values from pH 2.0 to 7.0, The retention as a function of pH was modeled using equations based on solute ionization, With PGC, the theoretical equations fitted the observed retention data for each class of solute, indicating that the retention mechanism was uniform over the whole pH range, However, with ODS, only the acidic solutes showed agreement with the theoretical model; for the amine-containing compounds, serious deviations from the theory were observed, suggesting that strongly acidic silanols gave added retention at low mobile phase pH. Overall, PGC demonstrated a higher selectivity toward positional isomers than ODS. This was attributed to the greater steric discriminating ability arising from the flat surface of the PGC compared with the more fluid nature of the ODS bonded phase.
机译:在两种不同的填充材料上比较了可电离的取代苯化合物的36个位置异构体的保留行为:多孔石墨碳(PGC)和十八烷基键合二氧化硅(ODS),使用35%的乙腈水溶液作为流动相。在pH 2.0至7.0的范围内,研究了流动相pH对溶质保留的影响。使用基于溶质离子化的方程式对保留率随pH的变化进行建模,利用PGC,理论方程拟合了所观察到的每种溶质的保留数据表明保留机理在整个pH范围内均一。对于含胺化合物,观察到与理论的严重偏离,表明强酸性硅烷醇在低流动相pH值下具有更高的保留率。总体而言,PGC对位置异构体的选择性高于ODS。这归因于与ODS键合相的流动性相比,PGC平坦的表面具有更大的空间分辨能力。

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