• Title of article

    Synthesis and Characterization of Indium-doped CdO Nanostructured Thin Films: a Study on Optical, Morphological, and Structural Properties

  • Author/Authors

    Bader, Ban A Department of Physics - College of Education - University of Al-Hamdaniya - Al-Hamdaniya - Nineveh, Iraq , Khalaph Muhammad, Shawki Department of Physics - College of girl Education - Kufa University, Iraq. , Mohammed Jabbar, Ali Department of Physics - College of Science - Mustansiriyah University - Baghdad, Iraq , Haneen Abass, Khalid Department of Physics - College of Education for Pure Sciences - University of Babylon, Iraq , Salman Chiad, Sami Department of Physics - College of Education - Mustansiriyah University - Baghdad, Iraq , Fadhil Habubi, Nadir Department of Physics - College of Education - Mustansiriyah University - Baghdad, Iraq

  • Pages
    7
  • From page
    744
  • To page
    750
  • Abstract
    In this study, the doping impact of indium (In) on the actual properties of CdO at different content of (1, 2, and 3 wt% In) was discussed. The samples were prepared utilizing the spray pyrolysis method. The structural, topographical, and optical properties were characterized X-ray diffraction (XRD) analysis, UV-Vis, and atomic force microscope (AFM). The surface topography was discussed by utilizing AFM analysis. Results display that the average diameter appears to be dependent on the indium content. The particle size was decreased from 78.05 to 65.77 nm when In content was increased from 0% to 3%. It is found that the roughness of the film was decreased to 3.03 nm via increasing In content to 3%. Also, the band gap of prepared samples were studied and compared. Results revealed that the value of band gap is decreasing via doping indium. The band gap of bare CdO, 1%In-CdO, and 3%In-CdO were determined 2.63, 2.54, and 2.46 respectively.
  • Keywords
    CdO thin film , Indium doping , Optical properties , Structural properties
  • Journal title
    Journal of NanoStructures
  • Serial Year
    2020
  • Record number

    2630527