Title :
Transparency and water-resistance enhancement of AR coating for the cover glass in the solar cell module
Author :
Wen-Lin Lan ; Kuan-Ho Chu ; Cheng-Chih Hsu
Author_Institution :
Dept. of Photonics Eng., Yuan Ze Univ., Chungli, Taiwan
Abstract :
This paper demonstrates the antireflection coating of SiO2 nanospheres applied to cover glass by using the optimal spin-coating method. Because of the hydrolysis and condensation reactions between the SiO2 nanosphere antireflection (AR) coating and n-octadecyltriethoxysilane solution (C18-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 SiO2 particles can be fabricated using the proposed simple and economical method.
Keywords :
antireflection coatings; hydrophobicity; silicon compounds; solar cells; cover glass; hydrophobic treatment; nanosphere antireflection coating; omnidirectional AR coating; optimal spin-coating method; p-polarization states; s- polarization states; solar cell module; water-resistance enhancement; Broadband communication; Coatings; Glass; Photovoltaic cells; Substrates; Surface treatment; Temperature measurement; antireflection coating; hydrophobic; nanoparticles; omnidirectional; spin coating;
Conference_Titel :
SICE Annual Conference (SICE), 2014 Proceedings of the
Conference_Location :
Sapporo
DOI :
10.1109/SICE.2014.6935274