Structural and optical properties of a radio frequency magnetron-sputtered ZnO thin film with different growth angles
Ki-Han Ko1, Yeun-Ho Joung, Won Seok Choi
1School of Electrical, Electronics and Control Engineering, Hanbat National University, Daejeon, 305-719, Republic of Korea. wschoi@hanbat.ac.kr.
Abstract:
This study introduces optical properties of a columnar structured zinc oxide [ZnO] antireflection coating for solar cells. We obtained ZnO films of columnar structure on glass substrates using a specially designed radio frequency magnetron sputtering system with different growth angles. Field-emission scanning electron microscopy was utilized to check the growth angles of the ZnO films which were controlled at 0°, 15°, and 30°. The film thickness was fixed at 100 nm to get a constant experiment condition. Grain sizes of the ZnO films were measured by X-ray diffraction. A UV-visible spectrometer was used to measure the transmittance and reflectance of the ZnO film columnar structures as a function of the growth angles.


