首页> 外文期刊>Journal of Sol-Gel Science and Technology >Impact of zinc doping on structural, optical, and electrical properties of CdO films prepared by sol-gel screen printing mechanism
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Impact of zinc doping on structural, optical, and electrical properties of CdO films prepared by sol-gel screen printing mechanism

机译:锌掺杂对溶胶 - 凝胶丝网印刷机构制备的CDO膜结构,光学和电性能的影响

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摘要

The simple, economical, eco-friendly sol-gel screen printing mechanism is used to incorporate pure and different zinc- (2, 4, 6, 8%) doped cadmium oxide films on glass substrate at 500 degrees C calcination temperature. X-ray diffraction (XRD) pattern of prepared films supports the polycrystalline and cubical nature of prepared films. High intensity peak is available at (111) plane for all prepared films. The average crystallite size and strain have been calculated by Williamson-Hall method for all films. The scanning electron microscope (SEM) confirms the impact of zinc on structural morphology of cadmium oxide films. Cd, Zn, O, and absence of any kind of impurities in prepared films has been confirmed by EDAX. It also supports the decrease in atomic percentage of Cd and O with an increase in zinc doping. UV-visible spectroscopy (300-900 nm) of prepared films confirms that the transmittance of films increases up to 60% with 6% doping of zinc and with 8% doping of zinc it decreases. It is also observed that the bandgap first increases up to 2.62 eV on varying doping of zinc from 0 to 6% and then decreases with 8% doping of zinc which clearly shows that the optical properties of cadmium oxide films enhances with doping of zinc. Photoluminescence spectrum of films confirms that there is an enhancement in luminescence property with zinc doping. Fourier transform infrared spectroscopy (FTIR) confirms the presence of Cd-O and O-C-O vibrations in films. Two-probe method has been used for the study of electrical properties of prepared films and it is seen that the electrical resistivity decreases with increase in doping of zinc up to 6% and with 8% doping of zinc it increases.
机译:简单,经济,环保的溶胶纤维丝网印刷机构用于在500摄氏度煅烧温度下在玻璃基板上掺入纯净和不同的锌 - (2,4,6,8%)掺杂的氧化镉膜。制备薄膜的X射线衍射(XRD)图案支持制备薄膜的多晶和立方体。适用于所有制备的薄膜的(111)平面可获得高强度峰值。对于所有薄膜的Williamson-Hall方法,已经计算了平均微晶尺寸和菌株。扫描电子显微镜(SEM)证实了锌对氧化镉膜结构形态的影响。通过埃德克斯证实了制备薄膜中任何类型的杂质的Cd,Zn,O和不存在任何类型的杂质。它还支持CD和O的原子百分比降低,随着锌掺杂的增加。 UV可见光谱(300-900nm)制备的薄膜确认,薄膜的透射率增加到60%,锌的6%掺杂和锌的掺杂减少了8%。还观察到该带隙首先增加高达2.62eV,即在0〜6%的锌的变化掺杂,然后用锌的8%掺杂减少,表明氧化镉膜的光学性质随锌的掺杂而增强。薄膜的光致发光光谱证实,具有锌掺杂的发光性能有增强。傅里叶变换红外光谱(FTIR)证实了薄膜中CD-O和O-C-O振动的存在。两种探针方法已被用于研究制备薄膜的电性能,并且可以看出,电阻率随着锌的掺杂增加而降低,锌的掺杂增长,并且它增加了8%的锌。

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