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Optical breathing of nano-porous antireflective coatings through adsorption and desorption of water

机译:纳米多孔抗反射涂层通过水的吸附和解吸进行光学呼吸

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We report on the direct consequences of reversible water adsorption on the optical performance of silica-based nanoporous antireflective (AR) coatings as they are applied on glass in photovoltaic and solar thermal energy conversion systems. In situ UV-VIS transmission spectroscopy and path length measurements through high-resolution interferometric microscopy were conducted on model films during exposure to different levels of humidity and temperature. We show that water adsorption in the pores of the film results in a notable increase of the effective refractive index of the coating. As a consequence, the AR effect is strongly reduced. The temperature regime in which the major part of the water can be driven-out rapidly lies in the range of 55°C and 135°C. Such thermal desorption was found to increase the overall transmission of a coated glass by ~ 1%-point. As the activation energy of isothermal desorption, we find a value of about 18?kJ/mol. Within the experimental range of our data, the sorption and desorption process is fully reversible, resulting in optical breathing of the film. Nanoporous AR films with closed pore structure or high hydrophobicity may be of advantage for maintaining AR performance under air exposure.
机译:我们报告了可逆水吸附对二氧化硅基纳米多孔抗反射(AR)涂层的光学性能的直接影响,因为它们被用于光伏和太阳能热能转换系统的玻璃上。在暴露于不同水平的湿度和温度的过程中,对模型胶片进行了原位UV-VIS透射光谱和高分辨率干涉显微镜的光程测量。我们表明,水在膜孔中的吸附导致涂层有效折射率的显着增加。结果,AR效果大大降低。可以迅速排出大部分水的温度范围为55°C至135°C。发现这种热解吸使涂层玻璃的总透射率增加〜1%。作为等温解吸的活化能,我们发现大约为18?kJ / mol。在我们数据的实验范围内,吸附和解吸过程是完全可逆的,从而导致薄膜的光学呼吸。具有封闭的孔结构或高疏水性的纳米多孔AR膜对于保持暴露于空气下的AR性能可能是有利的。

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