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Application of size exclusion chromatography with surfactant eluent to the study of polymer-surfactant interactions: oligomeric and micellar chromatographic effects

机译:尺寸排阻色谱与表面活性剂洗脱在聚合物与表面活性剂相互作用研究中的应用:低聚物和胶束色谱作用

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Complexation of sodium dodecyl sulphate (SDS) with a wide range of molecular weights of ploy(ethylene glycol) (PEG) and ploy(ethylene oxide) (PEO) has been studied by size exclusion chromatography using aqueous SDS eluent. A multi-angle laser light scattering detector and a differential refractometer were applied to give direct measurement of the molecular weight of complexes without reference to elution volume, since the latter is not a reliable indicator of the complex size. Background light scattering from micellar eluents hampered quantitative size measurements, but was minimal in sub-micellar eluent, where saturated binding was observed for polymers larger than 1000 g mol~(-1). Multiple peaks and voids were observed in the elution profiles of low molecular weight polymers (up to a mass of 600 g mol~(-1)) in eluent at micellar concentrations. Several sources contribute to this behavior, including micellar chromatographic separation of the PEG oligomers due to their different distribution coefficients between the micellar and water phases. Preliminary results are reported for distribution coefficients of individual oligomers in a 600 g mol~(-1) PEG sample. Three distinct binding behaviors are observed with increasing degree of polymerization of PEG: no interaction for small glycols, equilibrium partitioning of intermediate oligomers in and out of micelles, and binding of micelles to the larger polymers.
机译:十二烷基硫酸钠(SDS)与多种分子量的聚(乙二醇)(PEG)和聚(环氧乙烷)(PEO)的配合物已经通过使用体积排阻色谱法使用水性SDS洗脱液进行了研究。应用多角度激光散射检测器和差示折光仪直接测量络合物的分子量,而无需参考洗脱体积,因为后者不是络合物大小的可靠指标。来自胶束洗脱液的背景光散射妨碍了定量尺寸的测量,但是在亚胶束洗脱液中却极少,对于大于1000 g mol〜(-1)的聚合物,饱和胶束被观察到。在胶束浓度的洗脱液中,低分子量聚合物(质量为600 g mol〜(-1))的洗脱曲线中观察到多个峰和空隙。造成这种现象的原因有很多,其中包括PEG低聚物的胶束色谱分离,这是由于它们在胶束和水相之间的分布系数不同。报道了单个低聚物在600 g mol〜(-1)PEG样品中的分布系数的初步结果。随着PEG聚合度的增加,观察到三种不同的结合行为:小二醇之间没有相互作用,中间低聚物在胶束内外的平衡分配以及胶束与较大聚合物的结合。

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