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Morphological study of cationic polymer-anionic surfactant complex precipitated in solution during the dilution process

机译:稀释过程中溶液中沉淀的阳离子聚合物-阴离子表面活性剂复合物的形态学研究

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摘要

We investigated the phase diagrams and the morphology of the complexes that were formed by cationic polymers, cationic cellulose (CC) and cationic dextran (CD), and by anionic surfactant-based sodium poly(oxyethylene) lauryl ether sulfate (LES). The anionic charge of the LES-based surfactants was changed by adding an amphoteric surfactant, lauryl amidopropyl betaine acetate (LPB), or a nonionic surfactant, poly-oxyethylene stearyl ether (C_(18)EO_(25)). We discuss the relationship between the complex aggregation process and the morphology of the precipitated complexes. The morphologies of CC complex aggregates, which precipitated during the dilution process in a model shampoo solution, changed from membranous forms to mesh-like forms by decreasing the charges of both the CC and the surfactant. Their touch on hair in the rinsing process changed from sticky to smooth and velvety, corresponding to their rheological properties. In contrast, CD complex aggregates had a membranous form and a smooth touch independently of the charges on the polymer and surfactant. These results suggested that the control of the charges of both the polymer and surfactant and the choice of polymer structure are important for excellent conditioning effects upon rinsing with shampoo.
机译:我们研究了由阳离子聚合物,阳离子纤维素(CC)和阳离子葡聚糖(CD)以及基于阴离子表面活性剂的聚(氧乙烯)月桂基醚硫酸钠(LES)形成的配合物的相图和形态。通过添加两性表面活性剂,月桂酰氨基丙基丙基甜菜碱乙酸酯(LPB)或非离子表面活性剂,聚氧乙烯硬脂基醚(C_(18)EO_(25))来改变LES基表面活性剂的阴离子电荷。我们讨论了复杂的聚集过程和沉淀的复合物的形态之间的关系。通过在模型香波溶液中稀释过程中沉淀的CC复合物聚集体的形态,通过降低CC和表面活性剂的电荷,从膜状变为网状。在漂洗过程中,它们在头发上的触感从粘性变为光滑柔软,这与其流变特性相对应。相反,CD络合物聚集体具有膜形式和光滑的触感,而与聚合物和表面活性剂上的电荷无关。这些结果表明,对聚合物和表面活性剂两者的电荷的控制以及聚合物结构的选择对于用洗发剂漂洗时优异的调理效果很重要。

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  • 来源
    《Journal of cosmetic science》 |2010年第4期|P.289-301|共13页
  • 作者

    M. MIYAKE; Y. KAKIZAWA;

  • 作者单位

    Functional Materials Research Laboratories, Lion Corporation, 2-1 Hirai 7-Chome, Edogawa-ku, Tokyo 132-0035, Japan;

    rnBeauty Care Research Center , Lion Corporation, 2-1 Hirai 7-Chome, Edogawa-ku, Tokyo 132-0035, Japan;

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