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Rheology and UV-protecting properties of complex suspensions of titanium dioxides and zinc oxides

机译:二氧化钛和氧化锌复合悬浮液的流变学和防紫外线性能

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Ultra-fine particles of titanium dioxide (TiO2) and zinc oxides (ZnO) are very attractive as UV-protecting ingredients in cosmetic products. The UV-scattering behavior of complex suspensions in a silicone oil is studied in relation to theological properties. To control the dispersion stability of suspensions, three polyoxyethylene (POE)-modified silicones of branch-type, (AB)(n)-type, and ABA-type are used as dispersants. Irrespective of molecular structure, the dispersants can stabilize the TiO2 and ZnO particles and the flow of both single suspensions is Newtonian with low viscosity. However, the Newtonian flow profiles and high dispersion states are maintained only for complex suspensions prepared with ABA-type dispersant. Since the POE groups which are incorporated between terminal silicones groups attach to the particle surfaces, the steric stabilization is responsible for low viscosity and high dispersions. Because the UV scattering of suspensions is determined by the sizes of flocculated structures, the high transmittance in the visible ranges and low transmittance in the UVA and UVB ranges can be achieved in the presence of ABA-type dispersant. (c) 2007 Elsevier Inc. All rights reserved.
机译:二氧化钛(TiO2)和氧化锌(ZnO)的超细颗粒作为化妆品中的紫外线防护成分非常有吸引力。研究了硅油中复杂悬浮液的紫外线散射行为与其流变学性质的关系。为了控制悬浮液的分散稳定性,使用了支链型,(AB)(n)型和ABA型的三种聚氧乙烯(POE)改性的有机硅作为分散剂。不管分子结构如何,分散剂都能稳定TiO2和ZnO颗粒,并且两种悬浮液的流动都是牛顿粘度低的。但是,仅对于使用ABA型分散剂制备的复杂悬浮液,才可以保持牛顿流动特性和高分散状态。由于结合在末端有机硅基团之间的POE基团附着在颗粒表面,所以空间稳定作用是低粘度和高分散性的原因。由于悬浮液的紫外线散射取决于絮凝结构的大小,因此在存在ABA型分散剂的情况下,可以实现可见光范围内的高透射率以及UVA和UVB范围内的低透射率。 (c)2007 Elsevier Inc.保留所有权利。

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