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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effect of sodium chloride on precipitation and adsorption behavior of polymer-surfactant complex particles in aqueous solution
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Effect of sodium chloride on precipitation and adsorption behavior of polymer-surfactant complex particles in aqueous solution

机译:氯化钠对水溶液中聚合物表面活性剂复合颗粒的沉淀和吸附行为的影响

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Polymer-surfactant complex particles formed by dilution of shampoo play an important role in the sensory properties of shampoo, but their microscopic mechanism has not been clarified yet. This study clarifies the change mechanism influencing hair surface smoothness induced by this complex. The degrees of precipitation and adsorption of the polymer-surfactant complex particles are varied by changing the sodium chloride (NaCl) concentration in the shampoo formulation; hence, the relationships between the frictional and sensory properties during rinsing, the particle formation numbers in water, and the particle adsorption rate on the hair surface are investigated. The frictional property measurement and microscopic observation of human hair treated with the various shampoo solutions confirm that two different particle types, floating and adsorptive, are formed in water during the shampoo dilution process, both of which contribute to improving the hair smoothness. Then, NaCl is added to the basic shampoo composition to control the formation of these two particle types. The particle size distribution and chemical identification show formation of submicron-sized particles mainly consisting of cationized polymer in water with less than 0.20-wt % NaC1, which do not adsorb on the hair surface. For 0.75-3.00-wt.% NaCl, polymer-surfactant complex particles are formed, which easily adsorb on hair. Finally, we propose an optimal NaCl concentration of 0.75 wt.% to obtain excellent frictional properties. The result will contribute to the formulation of cosmetic products based on microscopic mechanism.
机译:通过稀释洗发剂形成的聚合物 - 表面活性剂复合颗粒在洗发剂的感觉特性中起重要作用,但它们的显微机理尚未澄清。本研究阐明了影响该复合物诱导的头发表面平滑度的变化机制。通过改变洗发剂配方中的氯化钠(NaCl)浓度改变氯化钠(NaCl)浓度来改变聚合物 - 表面活性剂复合颗粒的沉淀和吸附程度;因此,研究了漂洗过程中摩擦和感觉特性的关系,水中的颗粒形成数量和毛发表面上的颗粒吸附速率。用各种洗发水溶液处理的人发的摩擦性能测量和微观观察确认在洗发水稀释过程中在水中形成了两种不同的颗粒类型,浮动和吸附,这两者都有助于改善毛发平滑度。然后,将NaCl加入到基本洗发剂组合物中以控制这两个颗粒类型的形成。粒度分布和化学鉴定显示亚微米尺寸的颗粒的形成,主要由阳离子化聚合物在水中的阳离子化聚合物组成,该聚合物小于0.20-瓦%的NaC1,不吸附在毛发表面上。对于0.75-3.00-Wt。%NaCl,形成聚合物表面活性剂复合物颗粒,其容易吸附在毛发上。最后,我们提出了0.75重量%的最佳NaCl浓度。%以获得优异的摩擦性能。结果将有助于基于微观机制的化妆品的制定。

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