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Transparency and water-resistance enhancement of AR coating for the cover glass in the solar cell module

机译:太阳能电池模块中覆盖玻璃铝涂层透明度和耐水性

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This paper demonstrates the antireflection coating of SiO nanospheres applied to cover glass by using the optimal spin-coating method. Because of the hydrolysis and condensation reactions between the SiO nanosphere antireflection (AR) coating and n-octadecyltriethoxysilane solution (C-TEOS), the contact angle of the AR coating with hydrophobic treatment can be enhanced to 110° and the water-resistant remains unchanged which preserved similar transmittance for six weeks. Furthermore, the AR coating with hydrophobic treatment exhibits approximately 3% and 7% improvement in the transmittance of unpolarized light at normal and oblique incidence, respectively. And the transmittances of p- and s- polarization states are shown opposite tendency as incident angle increase. The hydrophobic and omnidirectional AR coating with nanoscale SiO particles can be fabricated using the proposed simple and economical method.
机译:本文通过使用最佳的旋涂法,显示了SiO纳米球的抗反射涂层涂覆覆盖玻璃。 由于SiO纳米球抗反射(Ar)涂层和正八碳基氧基硅烷溶液(C-TEOS)之间的水解和缩合反应,可以提高疏水处理的Ar涂层的接触角至110°,防水保持不变 它保留了类似的透射率六周。 此外,具有疏水性处理的Ar涂层分别显示出在正常和倾斜的发病率下不偏振的透射率的约3%和7%的改善。 并且P-和S-偏振态的透射率示出了与入射角增加的相反趋势。 可以使用所提出的简单和经济的方法制造含有纳米级SiO颗粒的疏水和全萘二烷基涂层。

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