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首页> 外文期刊>Journal of Surfactants and Detergents >Styrene Solubilization and Adsolubilization on an Aluminum Oxide Surface Using Linker Molecules and Extended Surfactants
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Styrene Solubilization and Adsolubilization on an Aluminum Oxide Surface Using Linker Molecules and Extended Surfactants

机译:使用连接分子和扩展表面活性剂在氧化铝表面上进行苯乙烯增溶和增溶

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The impact of lipophilic linker and extended surfactant properties on admicelle formation and styrene adsolubilization were evaluated through adsorption and adsolubilization studies on aluminum oxide. While linker-based systems achieved a higher maximum adsorption than extended surfactants, the extended surfactants reached maximum adsorption at a lower aqueous surfactant concentration. Results of solubilization and adsolubilization studies are summarized by the extent of solute solubilization into micelles and admicelles, as captured through the micellar partition coefficient, K_(mic), and the admicellar partition coefficient, K_(adm). The extended-surfactant-based micelles showed greater solubilization capacity than linker-based micelles. Relative to the effect of the number of propoxy groups for extended surfactants with the same alkyl chain length, the results show that the solubilization capacity increases when the PO number increases for both C12,13- and C14,15-based surfactant series. Thus, adsolubilization using extended-surfactant-based admicelles showed adsolubilization enhancement but required lower amounts of surfactants to form admicelles. These results thus provide insights into external and internal linker-based and extended-surfactant-based admicellar systems and highlight the differences observed between them and admicelles based on conventional surfactant systems.
机译:通过对氧化铝的吸附和增溶研究,评估了亲脂性连接基和扩展的表面活性剂性能对胶束形成和苯乙烯增溶的影响。尽管基于接头的体系比扩展的表面活性剂具有更高的最大吸附能力,但扩展的表面活性剂在较低的水性表面活性剂浓度下达到了最大吸附。增溶和脱脂研究的结果总结为溶质增溶成胶束和胶束的程度,可通过胶束分配系数K_(mic)和胶束分配系数K_(adm)来捕获。与基于接头的胶束相比,基于扩展表面活性剂的胶束显示出更大的增溶能力。相对于烷基链长度相同的扩展表面活性剂的丙氧基数目的影响,结果表明,当C12,13-和C14,15系列表面活性剂的PO数增加时,增溶能力会增加。因此,使用基于扩展表面活性剂的微粒的增溶显示出增溶作用,但是需要较少量的表面活性剂以形成微粒。因此,这些结果提供了对基于外部和内部接头的以及基于扩展表面活性剂的胶束体系的见解,并突出了它们与基于常规表面活性剂体系的胶束之间观察到的差异。

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