简介概要

Effect of Pre-heating Temperature on Structural and Optical Properties of Sol-gel Derived Zn0.8Cd0.2O Thin Films

来源期刊:Journal Of Wuhan University Of Technology Materials Science Edition2016年第6期

论文作者:黄波 刘超 赵修建

文章页码:1206 - 1210

摘    要:Zn0.8Cd0.2O thin films prepared using the spin-coating method were investigated. X-ray diffraction, scanning electron microscopy, and UV-Vis spectrophotometry were employed to illustrate the effects of the pre-heating temperature on the crystalline structure, surface morphology and transmission spectra of Zn0.8Cd0.2O thin films. When the thin films were pre-heated at 150 ℃, polycrystalline Zn O thin films were obtained. When the thin films were pre-heated at temperatures of 200 ℃ or higher, preferential growth of Zn O nanocrystals along the c-axis was observed. Transmission spectra showed that thin films with high transmission in the visible light range were prepared and effective bandgap energies of these thin films decreased from 3.19 e V to 3.08 e V when the pre-heating temperature increased from 150 ℃ to 300 ℃.

详情信息展示

Effect of Pre-heating Temperature on Structural and Optical Properties of Sol-gel Derived Zn0.8Cd0.2O Thin Films

黄波,刘超,赵修建

State Key Laboratory of Silicate Materials for Architecture,Wuhan University of Technology

摘 要:Zn0.8Cd0.2O thin films prepared using the spin-coating method were investigated. X-ray diffraction, scanning electron microscopy, and UV-Vis spectrophotometry were employed to illustrate the effects of the pre-heating temperature on the crystalline structure, surface morphology and transmission spectra of Zn0.8Cd0.2O thin films. When the thin films were pre-heated at 150 ℃, polycrystalline Zn O thin films were obtained. When the thin films were pre-heated at temperatures of 200 ℃ or higher, preferential growth of Zn O nanocrystals along the c-axis was observed. Transmission spectra showed that thin films with high transmission in the visible light range were prepared and effective bandgap energies of these thin films decreased from 3.19 e V to 3.08 e V when the pre-heating temperature increased from 150 ℃ to 300 ℃.

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