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首页> 外文期刊>RSC Advances >Preparation of mechanically stable triple-layer interference broadband antireflective coatings with self-cleaning property by sol–gel technique
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Preparation of mechanically stable triple-layer interference broadband antireflective coatings with self-cleaning property by sol–gel technique

机译:通过溶胶-凝胶技术制备具有自清洁性能的机械稳定的三层干涉宽带抗反射涂层

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摘要

Antireflective coatings usually suffer from poor functional durability during outdoor service. The incorporation of additional properties, such as broadband antireflection, self-cleaning and mechanical stability, is of great importance. In the current work, we synthesized broadband AR coatings via the design concept of triple-layer interference coating. SiO2–TiO2, TiO2 and nanoporous TiO2–SiO2 composite thin films were employed as bottom, middle and top layers. Substrates (BK-7 glass) coated with the triple-layer films attained consistent high transmittances at 500–700 nm and the average transmittance at that region was 99.4%. The triple-layer films exhibited an outstanding superhydrophilic property with water contact angle of 2° in 0.5 s, and the superhydrophilicity could last for 30 days in the absence of UV illumination. These triple-layer coatings also showed a good ability to decompose organic substances under UV irradiation. The synergistic effect between superhydrophilicity and photocatalysis provides the films with self-cleaning effect. Meanwhile, the abrasion resistance test of the triple-layer films indicated favorable robustness and good adhesion of the films to substrates. This multifunctional film can have potential applications in various areas, like solar cell panels, green houses and architectural glasses.
机译:抗反射涂层通常在户外使用期间具有较差的功能耐久性。结合其他特性(例如宽带减反射,自清洁和机械稳定性)非常重要。在目前的工作中,我们通过三层干涉涂层的设计概念 合成了宽带增透膜。 SiO 2 –TiO 2 ,TiO 2 以纳米多孔TiO 2 -SiO 2 复合薄膜为底层,中层和顶层。涂有三层膜的基板(BK-7玻璃)在500-700 nm处获得一致的高透射率,该区域的平均透射率为99.4%。该三层膜在0.5 s内的水接触角为2°时表现出优异的超亲水性,在没有紫外线照射的情况下,超亲水性可以持续30天。这些三层涂层在紫外线照射下也表现出良好的分解有机物质的能力。超亲水性和光催化之间的协同作用使薄膜具有自清洁作用。同时,三层膜的耐磨性测试表明该膜具有良好的坚固性和对基材的良好粘附性。这种多功能薄膜可以在太阳能电池板,温室和建筑玻璃等各个领域具有潜在的应用。

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