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首页> 外文期刊>Applied Surface Science >Polyfluoroalkyl-silica porous coatings with high antireflection properties and low surface free energy for glass in solar energy application
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Polyfluoroalkyl-silica porous coatings with high antireflection properties and low surface free energy for glass in solar energy application

机译:聚氟烷基 - 二氧化硅多孔涂层具有高抗反射性能和太阳能应用中的玻璃的低表面自由能

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摘要

Polyfluoroalkyl-silica porous coating stacks with durable antireflection (AR) properties have been obtained for photovoltaic (PV) application. An acid-catalyzed sol-gel process combined with evaporation induced self-assembly and the presence of a non-hydrolyzable polyfluoroalkyl group linked to the central atom of the silicon alkoxide was conducted. The aim was to obtain a low surface energy coating, devised to mitigate soiling adherence, without losing the AR properties of a baseline coating. In particular, the influence of polyfluoroalkyl chain length on the thickness, the water contact angle and optical transmission properties was first analyzed. The optimized polyfluoroalkyl-silica porous coating presented low surface energy 20 mJ/m(2), even with the desired low roughness values required for obtaining a negligible scattering of the incoming solar radiation. This coating was studied as an AR mono-layer and as an external coating in an AR bi-layer stack, with the presence of an inner dense-structured silica layer, that contributed to both the optical performance and durability, acting as an alkali diffusion preventing layer. The AR bi-layer stack deposited on two sides of glass provided a transmittance gain of 7.1%. Those optical properties were inalterable after accelerated aging tests, which sustains the reliability of the materials for solar energy applications.
机译:已经获得了具有耐用抗反射(AR)性质的多氟烷基 - 二氧化硅多孔涂层,用于光伏(PV)应用。进行酸催化的溶胶 - 凝胶加工与蒸发诱导的自组装和与硅醇盐的中央原子连接的非水解聚氟烷基的存在。目的是获得低表面能涂层,设计为减轻污染粘附,而不会损失基线涂层的AR性能。特别地,首先分析了多氟烷基链长度对厚度,水接触角和光学传动特性的影响。优化的多氟烷基 - 二氧化硅多孔涂层呈现低表面能<20mJ / m(2),即使具有所需的低粗糙度值,可以获得可忽略的光太阳辐射散射所需的值。将该涂层作为Ar单层进行研究,作为Ar双层堆叠中的外涂层,其存在内致密结构的二氧化硅层,这有助于光学性能和耐久性,作用作碱扩散防止层。在玻璃的两侧沉积的Ar双层堆叠提供了7.1%的透射率增益。这些光学性质在加速老化试验后惰性,这使得可实现太阳能应用材料的可靠性。

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