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- W3165487085 abstract "The ZnO is popular in the research fields nowadays because it novel properties which attracted various applications to use it. There is various types of method were used to deposit the ZnO thin film. However, not all the method will produce the high quality of thin film because of it limitations. In this research, the RF sputtering method was chosen because the method has some advantages compared to the other methods. The project was conducted to fabricate the ZnO thin film on the glass substrate by using RF sputtering, and to anneal and characterize the ZnO thin films on a glass substrate at different temperature by using Filmetric, FTIR, and optical microscope. ZnO thin films were deposited on the glass substrate by RF sputtering and then, the ZnO thin films were annealed at different temperatures; 200°C, 300°C, and 400°C in tube furnace for one hour. The optical property and surface morphology of annealed ZnO thin films were characterized. The refractive index of the ZnO thin film, the measurements were decreased when the higher annealing temperature was used which is from 1.6153 (200 °C), 1.4154 (300 °C) and 1.3541(400 °C). In addition, the higher transmittance was observed which is greater than 70%, and the absorbance shows that the four sample contain ZnO as the peak at range of 420.431 cm'1 to 450.30 cm'1 were presented which represent ZnO stretching and the present of O-H groups at range 3568.233 cm'1 to 3628.15 cm'1 shows the hygroscopic nature of ZnO. The surface morphology of the thin films were increased as the annealing temperature increased where the surface roughness was reduced and become smoother as the annealed temperature increased at above 200°C." @default.
- W3165487085 created "2021-06-07" @default.
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- W3165487085 date "2017-01-01" @default.
- W3165487085 modified "2023-09-27" @default.
- W3165487085 title "Fabrication and characterization of zinc oxide (ZnO) thin films on glass substrate by radio frequency (RF) sputtering technique / Siti Amira Norafarih An Ismoni" @default.
- W3165487085 hasPublicationYear "2017" @default.
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