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A Study of the Optical Properties and Fabrication of Coatings Made of Three-Dimensional Photonic Glass

机译:三维光子玻璃制成的光学性质及涂层的制造研究

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摘要

Photonic crystals employ optical properties based on optical, physical, chemical, and material science. Nanosilica particles have a high specific surface area and are widely used in nanotechnology research and biomedical applications. In this study, nanosilica particles were fabricated by sol–gel methods, and the particle sizes of the silica nanoparticles were 280, 232, and 187 nm, based on dynamic light scattering. The silica nanoparticle suspension solution was heated to boiling for fast evaporation processing for self-assembly to fabricate three-dimensional photonic glass for structural color coatings. The sample had an adjustable structural color (red: 640 nm, green: 532 nm, and blue: 432 nm). The microstructures of various structure-colored samples were arranged, but there was a disordered solid arrangement of silica nanoparticles. These were not perfect opal-based photonic crystals. Compared to opal-based photonic crystals, the arrangement of silica nanoparticles was a glassy structure with a short-range order. Due to the accumulation of silica nanoparticle aggregates, samples displayed a stable colloidal film, independent of the viewing angle. In our study, the fast solvent evaporation in the self-assembly process led to the formation of a colloidal amorphous array, and it fitted the requirement for non-iridescence. Non-iridescent photonic glass with various colors was obtained. This type of color coating has wide potential applications, including reflective displays, colorimetric sensors, textiles, and buildings.
机译:光子晶体基于光学,物理,化学和材料科学使用光学性质。纳米硅颗粒具有高比表面积,广泛应用于纳米技术研究和生物医学应用。在该研究中,通过溶胶 - 凝胶方法制造纳米硅藻颗粒,基于动态光散射,二氧化硅纳米颗粒的粒度为280,232和187nm。将二氧化硅纳米粒子悬浮液加热至沸腾以进行快速蒸发处理,用于自组装,以制造用于结构颜色涂层的三维光子玻璃。样品具有可调节的结构颜色(红色:640nm,绿色:532nm,蓝色:432 nm)。布置了各种结构上样品的微观结构,但是硅纳米粒子的无序固体排列。这些不是完美的蛋白石的光子晶体。与基于蛋白石的光子晶体相比,二氧化硅纳米粒子的布置是具有短距离顺序的玻璃状结构。由于硅纳米粒子聚集体的积累,样品显示出稳定的胶体膜,与视角无关。在我们的研究中,自组装过程中的快速溶剂蒸发导致形成胶体无定形阵列,并且它适用于非虹彩剂的要求。获得具有各种颜色的非呈虹彩光子玻璃。这种类型的彩色涂层具有宽的潜在应用,包括反射显示器,比色传感器,纺织品和建筑物。

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