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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Effects and mechanism characterization of ionic liquids as mobile phase additives for the separation of matrine-type alkaloids by liquid chromatography.
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Effects and mechanism characterization of ionic liquids as mobile phase additives for the separation of matrine-type alkaloids by liquid chromatography.

机译:离子液体作为液相色谱分离苦参碱类生物碱的流动相添加剂的作用及其机理表征。

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摘要

The mechanism for the separation of matrine-type alkaloids (sophoridine, sophoramine, sophocarpine, matrine, and oxymatrine) on a C(18) column with a mobile phase containing room temperature ionic liquids (RTILs) as additive was studied in the current work by investigating several factors that influenced chromatographic behavior, including mobile phase pH, buffer solution concentration, ionic liquid concentration, and length of alkyl groups in RTILs. Peak efficiency was selected as the criterion for chromatographic efficiency whereas peak efficiency was also selected for triethylamine (TEA). The addition of RTILs in a mobile phase demonstrated superior effects on the separation of these basic compounds because of the increase in peak efficiency. The difference between RTILs and TEA and the changes in retention factors caused by the additives concentration, depending on the acidity of the mobile phase, showed the dual nature of the ionic liquids. This allowed both the constituting anion and cation to participate in the retention mechanism. Furthermore, the chromatographic behaviors of analytes with a mobile phase containing RTILs having different lengths of alkyl groups at different concentrations, complied with the stoichiometric displacement model for retention (SDM-R). This clarified the significant role of competitive adsorption between solutes and additives on the stationary phase.
机译:在目前的工作中,研究了在含有室温离子液体(RTILs)作为流动相的C(18)色谱柱上分离苦参碱型生物碱(槐定碱,槐定胺,槐果碱,苦参碱和氧化苦参碱)的机理。研究影响色谱行为的几个因素,包括流动相pH,缓冲溶液浓度,离子液体浓度和RTIL中烷基的长度。选择峰效率作为色谱效率的标准,而选择三乙胺(TEA)的峰效率。由于峰效率的提高,在流动相中添加RTIL证明了对这些碱性化合物的分离具有优异的效果。 RTIL和TEA之间的差异以及由添加剂浓度引起的保留因子的变化,取决于流动相的酸度,表明了离子液体的双重性质。这允许构成阴离子和阳离子都参与保留机制。此外,流动相中包含不同浓度的不同烷基长度的RTIL的分析物的色谱行为符合保留的化学计量位移模型(SDM-R)。这阐明了固定相上溶质和添加剂之间竞争性吸附的重要作用。

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