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Synthesis of Monodispersed Silica Microparticles in a Microreactor for Well-Organized Colloidal Photonic Crystals

机译:良好组织的胶体光子晶体微反应器中单分散二氧化硅微粒的合成

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In this report, we describe the syntheses of monodispersed microparticles of silica, that is, polysilicate, in a microreactor based on St?ber method for fabrication of the well-organized colloidal photonic crystal (CPC) films with visible reflection properties. Although the bath synthesis of silica microparticles gave the relatively high coefficient of variation (CV) value of 14.1% in the particle diameter, we successfully improved the CV value from 14.1% to 5.5% by the microfluidic synthesis of silica microparticles in a flow reactor, arising from the separation of nucleation and growth processes. When we fabricated various CPC films of the silica microparticles by the vertical deposition technique, each CPC film showed a characteristic peak of Bragg reflection with a high reflectance over ~60% in the visible wavelength range. Moreover, we found that the experimental reflection spectra of CPC films have consistent with the theoretical spectra calculated by the scalar wave approximation (SWA) technique.
机译:在本报告中,我们描述了基于St?ber方法的微反应器中二氧化硅(即聚硅酸盐)的单分散微粒的合成,用于制造具有可见反射特性的组织良好的胶体光子晶体(CPC)膜。尽管二氧化硅微粒的浴合成使粒径的变异系数(CV)值相对较高,为14.1%,但我们通过在流动反应器中进行微流体合成二氧化硅微粒,成功地将CV值从14.1%提高到5.5%,由成核和生长过程的分离而产生。当我们通过垂直沉积技术制造各种二氧化硅微粒的CPC膜时,每个CPC膜在可见光波长范围内均表现出布拉格反射的特征峰,并具有超过〜60%的高反射率。此外,我们发现CPC膜的实验反射光谱与通过标量波近似(SWA)技术计算的理论光谱一致。

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