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Combined Anti-soiling and Anti-reflection Coatings for Solar Modules

机译:用于太阳能模块的抗污染和抗反射涂层

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The cover glass on solar modules provides protection for the underlying solar cells but also leads to two forms of power loss: reflection losses and soiling losses. In this work we explore the addition of a thin hydrophobic layer of refractive index n=1.35 to the outer surface of a broadband multilayer anti-reflection (MAR) coating, comparing modelling with the actual performance of the coating. Systems with hydrophobic layers from 5nm to 300nm in thickness deposited on the surface of a broadband AR coating have been modelled, with reflectance curves and weighted average reflection (WAR) calculations showing that the total reflection stays below that of uncoated glass at all thicknesses. However, the optimal coating is determined to be ∼5nm in thickness. Addition of the hydrophobic layer increases the water contact angle of the MAR coating from 7° to 114°, with a significant increase in anti-soiling properties. This provides proof of principle of the benefits of combining a high performance AR coating with a hydrophobic anti-soiling coating on module cover glass.
机译:太阳能模块上的盖玻片为下面的太阳能电池提供保护,但也导致两种形式的功率损失:反射损失和污染损失。在这项工作中,我们探讨了宽带多层抗反射(MAR)涂层的外表面的薄疏水层的薄型疏水层,比较了涂层的实际性能的建模。已经建模了沉积在宽带AR涂层表面上的液体厚度为5nm至300nm的系统,其中反射曲线和加权平均反射(战争)计算表明,总反射在所有厚度下的未涂覆玻璃的总体反射低于该厚度。然而,最佳涂层被确定为厚度为〜5nm。添加疏水层的添加增加了MAR涂层的水接触角7°至114°,具有显着增加的抗污染性能。这提供了将高性能Ar涂层与模块覆盖玻璃上的疏水性防污涂层组合的益处的原理证据。

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