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Comparison of Phenolic Compound Separations by HPTLC and PPEC with SDS as the Mobile Phase Component

机译:HPTLC和PPEC的酚类化合物分离与SDS作为流动相组分的比较

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The application of the surfactant (sodium dodecyl sulphate, SDS) as the component of the water-organic mobile phase in thin-layer chromatography and pressurized planar electrochromatography is presented. The influence of various variables on the separation of various phenolic compounds (flavonoids and phenolic acids) as model compounds with systems containing surfactant is discussed. The effect of concentration of butanol and SDS as well as pH of the mobile phase buffer on migration distance of the solute zones is investigated. The presence of SDS in the eluent affects the butanol solubility in the mobile phase. It allows using higher organic solvent concentration systems compared with the mode without surfactant. The amount of SDS in the eluent has the effect on the solute retention, whereas the eluent buffer pH affects the migration distances of ionisable phenolic acids both in HPTLC and PPEC. The migration distances of flavonoid glycosides are considerably longer than those of pure flavonoids. Considering second group of investigated solutes, derivatives of the benzoic acid migrate longer distances in comparison with the cinnamic acid ones. In addition, in the majority of experiments, ionisable compounds (phenolic acids) migrate longer distances in PPEC than nonionisable compounds (flavonoids). Additionally, the order of solutes differs in the PPEC and HPTLC system.
机译:介绍了表面活性剂(十二烷基硫酸钠,SDS)作为薄层色谱和加压平面电粒影子中的水 - 有机流动相的组分。讨论了各种变量对各种酚类化合物(黄酮类化合物和酚酸)作为含有表面活性剂的系统的模型化合物的分离的影响。研究了丁醇和SDS浓度的影响以及流动相缓冲液对溶质区迁移距离的pH。洗脱液中SDS的存在会影响流动相中的丁醇溶解度。它允许使用更高的有机溶剂浓度系统与没有表面活性剂的模式相比。洗脱液中的SDS的量具有对溶质潴留的影响,而洗脱液缓冲液pH会影响HPTLC和PPEC中的离子酚酸的迁移距离。黄酮类糖苷的迁移距离比纯类黄酮类化合物相当长。考虑到第二组调查溶质,苯甲酸的衍生物与肉桂酸乙酸相比迁移较长的距离。另外,在大多数实验中,可电离的化合物(酚酸)比非离子化合物(类黄酮)迁移PPEC中的较长距离。另外,溶质的顺序不同于PPEC和HPTLC系统。

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