防反射涂料
材料科学
透射率
涂层
接触角
光电子学
超疏水涂料
光学
多孔性
表面粗糙度
太阳能电池
复合材料
物理
作者
Wei Li,Xinyu Tan,Jinlin Zhu,Peng Xiang,Ting Xiao,Lihong Tian,Aibi Yang,Man Wang,Xiaobo Chen
标识
DOI:10.1016/j.mtener.2019.03.006
摘要
Abstract High-performance, broadband antireflective (AR) and superhydrophobic coatings are fabricated on glass through deposition of silica nanoparticles with spin coating method, followed by calcination and hydrophobic modification. Silica particles with unique porous structures not only increase the roughness of the coating, but also enhance the transmittance of the glass. The coated glass has displayed a large transmittance of 99% at wavelength of 580 nm, an absolute transmittance increase by 6% or more in the wavelength range of 480–900 nm, and an excellent hydrophobicity with a water contact angle (WCA) of 147° and a sliding angle 2 and the conversion efficiency from 6.03 to 6.64% for dye-sensitized solar cells (DSSCs), with a 10.12% improvement. This work thus has shown a promising approach to enhance the performance of solar cells with broadband antireflective coating surfaces .
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