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Highly Scattering Hierarchical Porous Polymer Microspheres with a High-Refractive Index Inorganic Surface for a Soft-Focus Effect

机译:高散射分层多孔聚合物微球具有高折射率无机表面用于软焦点效应

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摘要

Functional light scattering materials have received considerable attention in various fields including cosmetics and optics. However, a conventional approach based on optically active inorganic materials requires considerable synthetic effort and complicated dispersion processes for special refractive materials. Here, we report a simple and effective fabrication strategy for highly scattering hierarchical porous polymer microspheres with a high-refractive index inorganic surface that mitigates the disadvantages of inorganic materials, producing organic-inorganic hybrid particles with an excellent soft-focus effect. Hierarchical organic-inorganic hybrid particles were synthesized using the simple physical mixing of porous poly (methyl methacrylate) (PMMA) microparticles with different pore sizes and regularities as the organic core and titanium dioxide (TiO2) nanoparticles with different particle sizes as the inorganic shell. The polar noncovalent interactions between polar PMMA microspheres and the polar surface of TiO2 nanoparticles could induce the hierarchical core-shell structure of hybrid particles. The synthesized hybrid particles had increased diffuse reflectance properties of up to 160% compared with single inorganic particles. In addition, the light scattering efficiency and soft-focus effect could be increased further, depending on the size of the TiO2 nanoparticles and the pore characteristics of the PMMA microspheres. The proposed study can provide a facile and versatile way to improve the light scattering performance for potential cosmetics.
机译:功能光散射材料在包括化妆品和光学等各种领域中得到了相当大的关注。然而,基于光学活性无机材料的常规方法需要具有相当大的合成努力和特殊折射材料的复杂分散过程。在这里,我们报告了具有高散射分层多孔聚合物微球的简单且有效的制造策略,其具有高折射率无机表面,这些高折射率无机表面减轻了无机材料的缺点,产生了具有优异的软焦效应的有机无机杂交颗粒。使用具有不同孔径和规则的多孔聚(甲基丙烯酸甲酯)(PMMA)微粒的简单物理混合合成分层有机 - 无机杂化颗粒作为有机核和二氧化钛(TiO 2)作为无机壳的不同颗粒尺寸的纳米颗粒。极性PMMA微球和TiO2纳米颗粒的极性表面之间的极性非共价相互作用可以诱导杂化颗粒的分层核心壳结构。与单一无机颗粒相比,合成的杂交颗粒的弥漫性反射性能高达160%。另外,根据TiO2纳米颗粒的尺寸和PMMA微球的孔特性,可以进一步增加光散射效率和软焦效应。所提出的研究可以提供一种容易和多功能的方式来提高潜在化妆品的光散射性能。

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