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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Uptake and Release of Anionic Surfactant into and from Cationic Core-Shell Microgel Particles
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Uptake and Release of Anionic Surfactant into and from Cationic Core-Shell Microgel Particles

机译:阴离子表面活性剂在阳离子核-壳微凝胶颗粒中的吸收和释放

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摘要

Core-shell microgel particles, in the colloidal size range, have been prepared and characterized, where the core and the shell are both copolymers, based on N-isopropylacrylarnide, but where the core and shell contain different pH-responsive groups having widely separated acid dissociation constants (pK_a). The core contains vinylpyridine (VP), which has a pK_a value of 4.92, and the shell contains 2-(dimethylamino)ethyl methacrylate (DMAEM), which has a pK_a value of 8.4. The dispersion properties, and the uptake and release of an anionic surfactant, sodium dodecylbenzenesulfonate (SDBS), have been studied for both the core and the core-shell microgel particles as a function of pH changes. Both the core and the core-shell particles have been shown to swell as the pH decreases over the range from 7 to 3. However, despite the large differences in the pK_a values of the VP and DMEAM groups, no distinct steps in the swelling ratio-pH curve for the core-shell particles were observed, and it is postulated that the boundary between the core and shell regions may be somewhat extended, rather than sharp. The uptake of the anionic surfactant SDBS has been shown to depend on two distinct attractive interactions between the surfactant molecules and the microgel particles: electrostatic and hydrophobic. A reasonable correlation between the minimum in the particle diameter, for both the core and the core-shell particles, and the point of charge neutralization, in the presence of SDBS, has been established.
机译:已经制备并表征了胶体尺寸范围的核-壳微凝胶颗粒,其中核和壳都是基于N-异丙基丙烯酰胺的共聚物,但是其中核和壳包含具有广泛分离的酸的不同pH响应基团离解常数(pK_a)。核包含乙烯基吡啶(VP),其pK_a值为4.92,而壳包含甲基丙烯酸2-(二甲基氨基)乙酯(DMAEM),其pK_a值为8.4。已经研究了随pH变化而变化的核和核-壳微凝胶颗粒的分散性能以及阴离子表面活性剂十二烷基苯磺酸钠(SDBS)的吸收和释放。随着pH在7至3范围内降低,核和核-壳颗粒均溶胀。但是,尽管VP和DMEAM组的pK_a值差异很大,但溶胀率没有明显的变化观察到了核-壳颗粒的-pH曲线,并且推测核和壳区域之间的边界可能有所扩展,而不是尖锐的。阴离子表面活性剂SDBS的吸收已显示取决于表面活性剂分子与微凝胶颗粒之间的两种不同的吸引相互作用:静电和疏水。在存在SDBS的情况下,已经建立了核和核-壳颗粒两者的最小粒径与电荷中和点之间的合理相关性。

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