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Performance of different C18 columns in reversed-phase liquid chromatography with hydro-organic and micellar-organic mobile phases

机译:不同C18色谱柱在反相液相色谱中的应用 - 水 - 有机和胶束 - 有机流动相

摘要

Column selection in reversed-phase liquid chromatography (RPLC) can become a challenge if the target compounds interact with the silica-based packing. One of such interactions is the attraction of cationic solutes to the free silanols in silica-based columns, which is a slow sorption–desorption interaction process that gives rise to tailed and broad peaks. The effect of silanols is minimised by the addition of a competing agent in the mobile phase, such as the anionic surfactant sodium dodecyl sulphate (SDS). In micellar-organic RPLC, the adsorption of an approximately fixed amount of SDS monomers gives rise to a stable modified stationary phase, with properties remarkably different from those of the underlying bonded phase. The chromatographic behaviour (in terms of selectivity, analysis time and peak shape) of eight C18 columns in the analysis of weakly acidic phenols and basic β-blockers was examined with hydro-organic and micellar-organic mobile phases. The behaviour of the columns differed significantly when the cationic basic drugs were eluted with hydro-organic mobile phases. With micellar-organic mobile phases, the adsorption of surfactant, instead of making the columns similar, gave rise to a greater diversity of behaviours (especially in terms of selectivity and analysis time), for both groups of phenols and β-blockers, which should be explained by the residual effect of the underlying bonded stationary phase and the different amount of surfactant covering the packing. Therefore, the implementation of a micellar-organic procedure in RPLC will depend significantly on the selected type of C18 column.
机译:如果目标化合物与基于二氧化硅的填料相互作用,则反相液相色谱(RPLC)中的色谱柱选择将成为一项挑战。这种相互作用之一是阳离子溶质对二氧化硅基色谱柱中的游离硅烷醇的吸引,这是一个缓慢的吸附-解吸相互作用过程,会产生拖尾峰和宽峰。通过在流动相中添加竞争剂(例如阴离子表面活性剂十二烷基硫酸钠(SDS))将硅烷醇的影响降至最低。在胶束有机RPLC中,大约固定量的SDS单体的吸附会产生稳定的改性固定相,其性质与下面的键合相明显不同。用有机水和胶束有机流动相检查了八根C18色谱柱在弱酸性酚和碱性β阻滞剂分析中的色谱行为(根据选择性,分析时间和峰形)。当阳离子碱性药物用有机溶剂流动相洗脱时,色谱柱的行为差异很大。对于胶束-有机流动相,表面活性剂的吸附(而不是使色谱柱相似)引起了更多的行为多样性(尤其是在选择性和分析时间方面),这对于两组酚和β-阻滞剂来说都是如此。可以通过下面的键合固定相的残留效应和覆盖填料的不同数量的表面活性剂来解释。因此,在RPLC中执行胶束有机程序将很大程度上取决于所选的C18色谱柱类型。

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