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Silica single-layer inverse opal films: large-area crack-free fabrication and the regulation of transmittance in the visible region

机译:二氧化硅单层反蛋白石膜:无裂缝的制造和可见区域中的透射率的调节

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Crack-free large-area SiO2 single-layer inverse opal (IO) films, which possess typical circular holes on their surface similar to an inverse moth's eye structure, were designed based on the dynamic hard-template infiltration strategy by using a wide range of sizes of sacrificial polystyrene (PS) sphere templates, ranging from 220 to 930 nm. According to this strategy, a dynamic opal single-layer film of PS spheres is firstly self-assembled on the surface of water, followed by the infiltration of SiO2 precursor sol from underneath into the voids of the PS opal template. The obtained floating SiO2/PS opal composite film is deposited on high alumina silicate glass substrates, followed by calcination at 680 degrees C to yield single-layer SiO2 IO films with various pore sizes presenting a surface configuration similar to an inverse moth's eye structure. The effects of the porous structure on transmittance in the visible region are investigated. The pore depth, pore wall thickness and pore size concurrently play important roles in transmittance. It has been found that the transmittance increases as the opal period decreases and the intersection point between the transmittance spectra of the single-layer SiO2 IO films and that of the bare substrate red shifts as the pore size increases. To our knowledge, this is the first time that the fabrication of silica single-layer IO films having an inverse moth's eye structure and the relationship between their porous structure and optical properties in the visible region have been reported.
机译:无裂缝的大面积SiO2单层反蛋白石(IO)膜,其表面上具有与逆蛾眼结构相似的典型圆孔,通过使用各种各样的动态硬模板渗透策略设计牺牲聚苯乙烯(PS)球体模板的大小,范围为220至930nm。根据该策略,首先在水的表面上自组装PS球体的动态蛋白石单层膜,然后通过从下面的SiO 2前体溶胶渗透到PS Opal模板的空隙中。将得到的浮动SiO 2 / PS Opal复合膜沉积在高氧化铝硅酸盐玻璃基板上,然后在680℃下煅烧,得到单层SiO 2 IO膜,其具有呈现类似于逆蛾眼结构的表面构造。研究了多孔结构对可见区域中透射率的影响。孔深度,孔隙壁厚和孔径同时发挥透射率的重要作用。已经发现,随着蛋白石周期的降低和单层SiO 2 IO膜的​​透射光谱与裸衬底的变速器之间的交叉点随着孔径的增加而增加,透射率随着透射率的增加而增加。据我们所知,这是首次据报道具有逆蛾眼结构的二氧化硅单层IO膜的制造及其多孔结构与可见区域中的光学性质之间的关系。

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