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Multilayered silicone oil droplets of narrow size distribution: Preparation and improved deposition on hair

机译:窄尺寸分布的多层硅油滴:制备和改善在头发上的沉积

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Silicone oil droplets have limited deposition on hair due to electrostatic repulsion with negative surface charge of hair substrates. Aiming to improve silicone deposition on hair substrates, surface properties of uniform-sized silicone oil droplets (produced by membrane emulsification) were modified using layer-by-layer electrostatic deposition. By using this method, silicone oil droplets were coated with large molecular weight polymers, i.e. quaternized chitosan and alginate, and low molecular weight compounds, i.e. diallyl dimethyl ammonium chloride and glycerol to obtain six alternate layers of different surface charges. It was found that the dispersion of coated silicone oil droplets of narrow size distribution exhibited much improved mechanical strength and increased viscosity against shear compared to uncoated droplets. These multilayered silicone oil droplets were then added into model shampoos and conditioners to study the effect of charge and molecular weight of coating materials on silicone oil deposition on hair. The results clearly demonstrated that surface charge and charge density have significant influence on silicone oil deposition. Droplets with higher positive charge density resulted in increased deposition of silicone on hair due to electrostatic attraction. Characterization of the hair surface potential, wetting properties and friction certified the results further, showing reduced friction, decreased wetting angle and positive surface potential of high density positively charged silicone oil droplets. Therefore, LBL surface modification combined with membrane emulsification is a promising method for preparing multilayered silicone oil droplets of increased mechanical strength, viscosity and deposition on hair.
机译:由于静电排斥作用以及头发基质的负表面电荷,硅油滴在头发上的沉积有限。为了改善有机硅在头发基质上的沉积,使用逐层静电沉积对均匀大小的硅油小滴(通过膜乳化法生产)的表面性能进行了改性。通过使用这种方法,硅油滴涂有大分子量的聚合物,即季铵化的壳聚糖和藻酸盐,以及低分子量的化合物,即二烯丙基二甲基氯化铵和甘油,得到六层不同表面电荷的交替层。已经发现,与未涂覆的液滴相比,具有窄尺寸分布的涂覆的硅油液滴的分散体表现出大大改善的机械强度和增加的抗剪切粘度。然后将这些多层的硅油小滴添加到模型香波和护发素中,以研究电荷和涂料分子量对硅油在头发上沉积的影响。结果清楚地表明,表面电荷和电荷密度对硅油沉积具有显着影响。由于静电吸引,具有较高正电荷密度的液滴会导致有机硅在头发上的沉积增加。头发表面电势,润湿特性和摩擦的特性进一步验证了结果,显示出摩擦减小,润湿角减小以及高密度带正电的硅油小滴的正表面电势。因此,将LBL表面改性与膜乳化相结合是制备机械强度,粘度和在头发上沉积增加的多层硅油小滴的有前途的方法。

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