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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Enhanced Near-Infrared Shielding and Light Scattering Using Surface-Roughened Hybrid Hollow Microparticles Synthesized with Polymer and TiO2@Al(OH)(3) for Cosmetic Applications
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Enhanced Near-Infrared Shielding and Light Scattering Using Surface-Roughened Hybrid Hollow Microparticles Synthesized with Polymer and TiO2@Al(OH)(3) for Cosmetic Applications

机译:使用用聚合物和TiO2 @ Al(3)合成的表面粗糙的混合中空微粒进行化妆品应用的表面粗糙的杂交中空微粒,增强近红外屏蔽和光散射

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摘要

Some materials and their micro-/nanostructures are explored to shield near-infrared (NIR) light. However, the structural role of polymeric matrices in terms of the sensitivity to NIR light and the scattering/absorption characteristics of particles bearing inorganic colloids lack understanding. To understand this issue further, a polymer-inorganic hybrid microparticle is synthesized, where submicrometer-sized TiO2 core-thin aluminium hydroxide shell colloids (TiO2@Al(OH)(3)) are dispersed in a roughened polymer hollow particle matrix. They exhibit higher light extinction at NIR frequencies and higher light scattering efficiencies in the NIR regions compared to hybrid solid microparticles and a simple mixture of inorganic and polymer hollow microparticles. Owing to these characteristics, a cosmetic formulation containing the roughened hybrid hollow microparticles effectively suppresses the increase in the temperatures of artificial skin upon the illumination of a simulated sunlight, without displaying skin whitening which is caused by including much inorganic colloids in the formulation. The present results are helpful to those who manipulate the optical characteristics of inorganic particles whose geometries are hardly tailored. The results are also practically helpful to those who want to block NIR light by reducing the amount of inorganic particles.
机译:探索一些材料及其微/纳米结构以屏蔽近红外(NIR)光。然而,聚合物基质在对Nir光的敏感性方面的结构作用以及患有无机胶体的颗粒的散射/吸收特性缺乏了解。为了进一步理解该问题,合成了一种聚合物 - 无机杂化微粒,其中亚微米计大小的TiO 2核氢氧化铝胶体(TiO 2 @ Al(OH)(3))分散在粗糙的聚合物中空颗粒基质中。与杂化固体微粒和无机和聚合物中空微粒的简单混合物相比,它们在NIR频率下表现出较高的NIR频率和较高的光散射效率,以及无机和聚合物中空微粒的简单混合物。由于这些特性,含有粗糙的杂交中空微粒的化妆品制剂有效地抑制了模拟阳光照射时人造皮肤温度的增加,而不显示由包括制剂中多种无机胶体引起的皮肤美白。目前的结果对操纵无机粒子的光学特性的人有帮助,其几何形状几乎不定制。结果在实际上还有助于通过减少无机颗粒量来阻止NIR光的人。

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