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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Producing photoactive, transparent and hydrophobic SiO2-crystalline TiO2 nanocomposites at ambient conditions with application as self-cleaning coatings
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Producing photoactive, transparent and hydrophobic SiO2-crystalline TiO2 nanocomposites at ambient conditions with application as self-cleaning coatings

机译:在环境条件下生产光敏,透明和疏水的SiO2晶体TiO2纳米复合材料,并用作自清洁涂料

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摘要

Nowadays, the enhancement of atmospheric pollution is dramatically increasing the presence of soiling on buildings in every city of the world. Thus, the development of photocatalysts as self-cleaning coatings is a promising challenge. The first object of this work was to develop a simple synthesis route for obtaining SiO2-crystalline TiO2 nanocomposites at ambient temperature. Thus, it meets the requirements to produce photoactive coatings on buildings and, additionally, it can be used in other applications requiring low temperature. The second objective was to gain insights into the structure of these materials and to establish the relationship between their structure and their performance as photocatalysts. The synthesis process involves mixing titanium and silicon alkoxides in the presence of oxalic acid. An organic silica oligomer is also added to reduce surface energy and consequently, to give hydrophobic properties to the material. These products were applied as a coating on marble specimens in order to investigate their effectiveness. The results obtained highlight that oxalic acid acts a chelating agent of the titanium precursor, giving rise to a homogeneous TiO2-SiO2 material. In addition and most importantly, oxalic acid produces photoactive anatase crystals at ambient temperature. From our investigation on the structure of these materials, we conclude that the formation of independent domains of TiO2 inside of SiO2 matrix, and the anatase crystal size are key factors for improving the photoactivity of the coatings. We also conclude that the oxalic acid concentration plays a crucial role in the formation of this optimum structure.
机译:如今,大气污染的加剧极大地增加了世界上每个城市建筑物上的污物。因此,作为自清洁涂料的光催化剂的开发是有前途的挑战。这项工作的第一个目的是开发一种简单的合成途径,以在环境温度下获得SiO2晶体TiO2纳米复合材料。因此,它满足了在建筑物上生产光敏涂层的要求,此外,它还可以用于需要低温的其他应用中。第二个目标是深入了解这些材料的结构,并建立它们的结构与其作为光催化剂的性能之间的关系。合成过程涉及在草酸的存在下混合钛和烷氧基硅。还添加有机二氧化硅低聚物以降低表面能,并因此赋予材料疏水性。这些产品被用作大理石样品的涂层,以研究其有效性。获得的结果突出表明草酸充当钛前体的螯合剂,从而产生均匀的TiO 2 -SiO 2材料。另外,最重要的是,草酸在环境温度下会产生光敏锐钛矿晶体。通过对这些材料的结构的研究,我们得出结论,SiO2基体内部TiO2的独立域的形成以及锐钛矿晶体的大小是改善涂层光敏性的关键因素。我们还得出结论,草酸浓度在这种最佳结构的形成中起着至关重要的作用。

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