Optical and Electrical Transport Properties of the ZnO:CdO Composite Film

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
A. Mussabekova, A. Tussupbekova, A. Aimukhanov
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Abstract

In this work, zinc oxide films and composite ZnO:CdO films with cadmium oxide concentrations of 3 , 5 , 7 , 10 , and 12 were obtained by spin-coating on FTO. The films were annealed in the atmosphere under the same temperature conditions of 450°C. The morphology of ZnO:CdO composite films was studied by the SEM method and an electron-dispersion analysis of the concentration of the studied substance was carried out. The influence of the surface morphology of the composite film with an increase in the CdO concentration from 3 to 12 on the optical and electrotransport properties of the ZnO:CdO composite film was studied. The optical absorption spectra of composite films of zinc oxide and cadmium were measured. A Tauc plot is presented to determine the band gap of a ZnO:CdO composite film. It has been established that an increase in the CdO concentration on the ZnO surface leads to a decrease in the optical band gap. The observed decrease in the optical band gap of the film with increasing CdO is due to the small band gap of CdO. The method of impedance spectroscopy was used to study the main electrophysical characteristics, in particular, the dynamics of charge carrier transfer in nanocomposite films based on ZnO:CdO. It has been established that the CdO layer on the ZnO surface contributes to a decrease in the resistance value of the composite film Rw, an increase in the charge recombination resistance parameter Rrec at the interface, and an increase in the efficiency of electron injection.
ZnO:CdO复合薄膜的光学和电学输运性质
在FTO上制备了氧化镉浓度分别为3、5、7、10和12的氧化锌膜和ZnO:CdO复合膜。在450°C的相同温度条件下,在大气中对薄膜进行退火。采用扫描电镜研究了ZnO:CdO复合膜的形貌,并对所研究物质的浓度进行了电子色散分析。研究了当CdO浓度从3增加到12时,复合膜表面形貌对ZnO:CdO复合膜光学和电输运性能的影响。测定了氧化锌和镉复合膜的光吸收光谱。提出了一种确定ZnO:CdO复合薄膜带隙的Tauc图。结果表明,ZnO表面上CdO浓度的增加会导致光学带隙的减小。随着CdO的增加,薄膜的光学带隙减小,这是由于CdO的带隙较小。采用阻抗谱法研究了ZnO:CdO纳米复合膜的主要电物理特性,特别是载流子转移动力学。结果表明,ZnO表面的CdO层降低了复合膜的电阻值Rw,增加了界面处的电荷复合电阻参数Rrec,提高了电子注入效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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50.00%
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32
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