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Structural, optical and Urbach energy properties of ITO/CdS and ITO/ZnO/CdS bi-layer thin films

机译:ITO / CD和ITO / ZnO / CDS双层薄膜的结构,光学和URBACH能量特性

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摘要

The thin films of ITO/CdS and ITO/ZnO/CdS bi-layer have been fabricated and studied for structural, morphological, optical, and Urbach energy properties. ZnO thin films were coated onto ITO plated glass slides by a spin-coating method and CdS thin films by electron beam evaporation method. X-Ray Diffraction patterns of both ITO/CdS and ITO/ZnO/CdS thin films confirmed the hexagonal wurtzite structure of ZnO and hexagonal structure of CdS, respectively. AFM images show better uniformity and bigger grain size in the case of OTO/ZnO/CdS samples. Optical transmittance spectra show a slight redshift (~ 493 nm to ~ 505 nm) for the film ITO/ZnO/CdS compared to ITO/CdS. Urbach energy was calculated for all the samples to study the structural imperfections leading to the band tails. A decrease in Urbach energy is observed for ITO/ZnO/CdS compared to ITO/CdS. The obtained results indicate that the ITO/ZnO/CdS thin films are more suitable for optoelectronic devices compared to ITO/CdS films. The results obtained are discussed in detail and presented in this paper.
机译:已经制造了ITO / CD和ITO / ZnO / Cds Bi-层的薄膜,并研究了结构,形态,光学和URBACH能量性能。通过电子束蒸发方法将ZnO薄膜通过旋涂法和Cds薄膜涂覆在ITO电镀玻璃载玻片上。 ITO / Cds和ITO / ZnO / Cds薄膜的X射线衍射图谱分别证实了CDS的ZnO和六边形结构的六方紫立茨结构。在OTO / ZnO / CDS样品的情况下,AFM图像显示出更好的均匀性和更大的粒度。与ITO / CD相比,光学透射率光谱显示薄膜ITO / ZnO / CD的略微红移(〜493nm至〜505nm)。为所有样品计算了URBACH能量,以研究通向带尾部的结构缺陷。与ITO / CD相比,为ITO / ZnO / CDS观察到URBACH能量的降低。得到的结果表明,与ITO / CD膜相比,ITO / ZnO / Cds薄膜更适合于光电器件。得到的结果详细讨论并本文介绍。

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  • 来源
    《Journal of materials science》 |2021年第7期|8976-8982|共7页
  • 作者单位

    Department of Physics SSIT Sri Siddhartha Academy of Higher Education Tumakuru 572107 India;

    Department of Electronics Govt. First Grade College Kuvempunagar Mysore 570023 India;

    Department of Electronic Science Bangalore University Bengaluru 560056 India;

    School of Physics REVA University Bengaluru 560064 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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