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Effects of polymeric dispersants on the rheology and UV-protecting properties of complex suspensions of titanium dioxides and zinc oxides

机译:聚合物分散剂对二氧化钛和氧化锌复合悬浮液的流变学和防紫外线性能的影响

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摘要

Titanium dioxide (TiO2) and zinc oxide (ZnO) particles are very effective as UV-protecting inorganic materials in cosmetic products, but they tend to form flocs in a liquid. Because the UV scattering of suspensions strongly depends on the floc size, the degree of flocculation can be evaluated by rheological technique. To control the flocculation level of complex suspensions, polyoxyethylene (POE)-modified silicones of ABA-type in which the POE groups are incorporated between terminal groups of dimethylpolysiloxane (DMPS) are used as dispersants. Based on the experimental results that the suspensions consisting of small flocs show low viscosity and high UV-protection, it is confirmed that the optimum HLB value which contributes to excellent UV scattering is lower for dispersants with higher molecular weight. In adsorption, the POE groups attach to the particle surfaces and the silicone groups are in an extended conformation. The steric stabilization mechanism is responsible for low viscosity of suspensions. Since the conformation of adsorbed chains is determined by the adsorption energy of POE and loss of conformational entropy of DMPS, the molecular weight of PEO and balance between PEO and DMPS play a crucial role in controlling the flocculation level and UV-protecting ability.
机译:二氧化钛(TiO2)和氧化锌(ZnO)颗粒作为化妆品中的防紫外线无机材料非常有效,但它们往往在液体中形成絮凝物。由于悬浮液的紫外线散射在很大程度上取决于絮状物的大小,因此可以通过流变技术评估絮凝程度。为了控制复杂悬浮液的絮凝程度,将其中POE基团结合在二甲基聚硅氧烷(DMPS)的端基之间的ABA型聚氧乙烯(POE)改性的有机硅用作分散剂。基于实验结果,由小絮凝物组成的悬浮液显示出低粘度和高的紫外线防护性,证实了对于具有较高分子量的分散剂而言,有助于优异的紫外线散射的最佳HLB值较低。在吸附过程中,POE基团附着在颗粒表面,而有机硅基团处于扩展构象。空间稳定机制是造成悬浮液粘度低的原因。由于吸附链的构象是由POE的吸附能和DMPS的构象熵的损失决定的,因此PEO的分子量以及PEO和DMPS之间的平衡在控制絮凝水平和保护紫外线方面起着至关重要的作用。

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