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Macroporous Hydrogels for Fast and Reversible Switching between Transparent and Structurally Colored States

机译:大孔水凝胶,用于在透明和结构上色的态度之间快速和可逆切换

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摘要

Colloidal crystals have been used for creating stimuli-responsive photonic materials. Here, macroporous hydrogels are designed, through a simple and reproducible protocol, that rapidly and reversibly switch between highly transparent and structurally colored states. The macroporous hydrogels are prepared by film-casting photocurable dispersions of silica particles in hydrogel-forming resins and selectively removing silica particles. The silica particles spontaneously form a nonclose-packed array due to repulsive interparticle interaction, which form the regular array of cavities after removal. However, the cavities are randomly collapsed by drying, losing a long-range order and rendering the materials highly transparent. When the hydrogels are swollen by either water, ethanol, or the mixture, the regular array is restored, which develops brilliant structural colors. This switching is completed in tens of seconds and repeatable without any hysteresis. The resonant wavelength depends on the composition of the water-ethanol mixture, where the dramatic shift occurs in one-component-rich mixtures due to the composition of the hydrogel. Micropatterns can be designed to have distinct domains of the macroporous hydrogels, which are transparent at the dried state and disclose encrypted graphics and unique reflectance spectra at the wet state. This class of solvent-responsive photonic hydrogels is potentially useful for alcohol sensors and user-interactive anti-counterfeiting materials.
机译:胶体晶体已被用于产生刺激响应性光子材料。这里,通过简单和可重复的协议设计大孔水凝胶,在高度透明和结构上色的状态之间快速且可逆地切换。通过在半凝胶形成树脂中薄膜浇铸的二氧化硅颗粒的光固化分散体制备大孔水凝胶,并选择性地除去二氧化硅颗粒。由于排斥颗粒间相互作用,二氧化硅颗粒自发地形成无卷发堆叠阵列,其在去除后形成常规空腔阵列。然而,空腔通过干燥随机塌陷,丢失远程顺序并使材料高度透明。当水凝胶通过水,乙醇或混合物溶胀时,恢复常规阵列,这会产生辉煌的结构颜色。该切换完成在几十秒内,可重复于没有任何滞后。谐振波长取决于水 - 乙醇混合物的组成,其中由于水凝胶的组成,在一种组分的富含混合物中发生显着变化。微图案可以设计成具有大孔水凝胶的不同结构域,其在干燥状态下是透明的,并在湿状状态下公开加密的图形和独特的反射光谱。这类溶剂响应光子水凝胶可能可用于醇传感器和用户交互式防伪材料。

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