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A non-template hydrothermal route to uniform 3D macroporous films with switchable optical properties

机译:通过非模板水热途径制备具有可切换光学特性的均匀3D大孔薄膜

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Here we report the direct synthesis of long-range uniform 3D macroporous film on the surface of glass via a non-template strategy by reacting silica with a mixture solution of HCl and H_2O_2 under hydrothermal conditions. The size of macropores can be tuned from 1 μm to 7 μm by changing the hydrothermal temperature. Followed by the impregnation or release of water, the 3D porous films showed a high-contrast optical switchable property. The maximum optical transmittance modulation of these 3D porous films was up to 50% over the visible and near IR wavelength range. Furthermore, liquid-induced optical switching device were designed as a sandwich structure. The average transmittance of the device was varied between 62.3% (from 350 to 1100 nm) at the transparent state and 13.2% (from 350 to 1100 nm) at the opaque state, respectively. Such a wide modulation range of optical transmittance is suitable for application of this porous film to energy saving smart windows.
机译:在这里,我们报告了通过非模板策略通过在水热条件下使二氧化硅与HCl和H_2O_2的混合溶液反应,在玻璃表面上直接合成长距离均匀3D大孔膜。通过改变水热温度,可以将大孔的大小从1μm调整为7μm。在水的浸渍或释放之后,3D多孔膜显示出高对比度的光学可切换特性。这些3D多孔膜的最大透光率调制在可见光和近红外波长范围内高达50%。此外,将液体诱发的光开关装置设计为三明治结构。器件的平均透射率在透明状态下为62.3%(从350到1100 nm)和在不透明状态下为13.2%(从350到1100 nm)。如此宽的光学透射率调制范围适合将该多孔膜应用于节能型智能窗户。

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