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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >A highly hydrophobic anionic surfactant at oil-water, water-polymer and oil-polymer interfaces: Implications for spreading coefficients, polymer interactions and microencapsulation via internal phase separation
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A highly hydrophobic anionic surfactant at oil-water, water-polymer and oil-polymer interfaces: Implications for spreading coefficients, polymer interactions and microencapsulation via internal phase separation

机译:在油-水,水-聚合物和油-聚合物界面处的高疏水性阴离子表面活性剂:对扩散系数,聚合物相互作用和通过内部相分离的微囊化的影响

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摘要

Multicore-shell particles consisting of a poly(methyl methacrylate) shell and multiple dodecane cores have been prepared via the internal phase separation method using the oil-soluble anionic surfactant sodium 1,5-dioxo-1,5-bis(3,5,5-trimethylhexylocy)-3-((3,5,5 trimethylhexyloxy)carbonyl)pentane-2-sulfonate (TC4) and the water-soluble polycation poly(diallyldimethylammonium chloride) (PDADMAC) in combination as a dispersant pair. The multicore-shell particles have been investigated using SEM, light microscopy and microelectrophoresis. The detailed influence of TC4 on the oil-water, water-polymer and oil-polymer interfaces and its interaction with PDADMAC have been investigated using a quartz crystal microbalance with dissipation monitoring (QCM-D) and different optical tensiometry methods. TC4 stabilizes in particular the polymer-water interface in the presence of PDADMAC instead of the oil-water interface in contrast to water-soluble surfactants. In addition, the oil-polymer interface is stabilized by TC4 which prevents coalescence of the oil droplets and leads to multicore-shell morphology rather than single core-shell.
机译:使用油溶性阴离子表面活性剂1,5-二氧杂-1,5-双(3,5,)钠,通过内相分离法制备了由聚甲基丙烯酸甲酯壳和多个十二烷核组成的多核壳颗粒。 5-三甲基己基-3-((3,5,5三甲基己氧基)羰基)戊烷-2-磺酸盐(TC4)和水溶性聚阳离子聚(二烯丙基二甲基氯化铵)(PDADMAC)作为分散剂对组合使用。已经使用SEM,光学显微镜和微电泳研究了多核壳颗粒。使用具有耗散监测的石英晶体微天平(QCM-D)和不同的光学张力法,研究了TC4对油-水,水-聚合物和油-聚合物界面的详细影响及其与PDADMAC的相互作用。与水溶性表面活性剂相比,TC4特别是在PDADMAC的存在下稳定了聚合物-水的界面,而不是油-水界面。另外,油-聚合物界面通过TC4稳定,这可防止油滴聚结并导致多核-壳形而不是单核-壳形。

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