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Low-reflective and super-hydrophilic properties of titanate or titania nanotube thin films via layer-by-layer assembly

机译:钛酸酯或二氧化钛纳米管薄膜的逐层组装低反射性和超亲水性

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Transparent nanotube films of hydrogen titanate were fabricated by a layer-by-layer self assembly. Titania (anatase) nanotube films were also obtained by annealing titanate nanotube films at 673 K in air. Both types of film had an optically low reflectivity and a high transparency compared to polycrystalline anatase thin films. The low reflectivity and the high transparent properties of the nanotube films are due to their nanostructural porosity, i.e. the inner cavities of the nanotubes and the void spaces between nanotubes. Thin films of titanate and titania nanotubes became super-hydrophilic with a water contact angle of zero degrees under UV illumination, but the water contact angle of polycrystalline anatase thin films did not decrease below five degrees. The highly hydrophilic surfaces of the nanotubes are attributed to their nanostructural morphologies.
机译:钛酸氢盐的透明纳米管膜是通过逐层自组装制造的。还通过在空气中于673 K退火钛酸酯纳米管薄膜来获得二氧化钛(锐钛矿)纳米管薄膜。与多晶锐钛矿薄膜相比,两种类型的薄膜都具有光学低反射率和高透明度。纳米管膜的低反射率和高透明性归因于它们的纳米结构孔隙率,即,纳米管的内腔和纳米管之间的空隙。钛酸酯和二氧化钛纳米管的薄膜在紫外线照射下的亲水性为零,水接触角为零度,但多晶锐钛矿型薄膜的水接触角并未降低至五度以下。纳米管的高度亲水的表面归因于它们的纳米结构形态。

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