• Title of article

    Preparation and study of structural and optical properties of CSVT deposited CuInSe2 thin films

  • Author/Authors

    Kannan، نويسنده , , M.D and Balasundaraprabhu، نويسنده , , R and Jayakumar، نويسنده , , S and Ramanathaswamy، نويسنده , , P، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    17
  • From page
    379
  • To page
    395
  • Abstract
    A simple close-spaced vapour transport (CSVT) system has been designed and fabricated. Copper indium diselenide (CuInSe2) thin films of wide range of thickness (4000–60000 Å) have been prepared using the fabricated CSVT system at source temperatures 713, 758 and 843 K. A detailed study on the deposition temperature has been made and the temperature profile along with the reaction kinetics is reported. The composition of the chemical constituents of the films has been determined by energy dispersive X-ray analysis. The structural characterization of the as-deposited CuInSe2 films of various thicknesses has been carried out by X-ray diffraction method. The diffractogram revealed that the CuInSe2 films are polycrystalline in nature with chalcopyrite structure. The structural parameters such as lattice constants, axial ratio, tetragonal distortion, crystallite size, dislocation density and strain have been evaluated and the results are discussed. The surface morphology of the as-deposited CuInSe2 thin films has been studied using scanning electron microscope. The transmittance characteristics of the CuInSe2 films have been studied using double beam spectrophotometer in the wavelength range 4000–15000 Å and the optical constants n and k are evaluated. The absorption coefficient has been found to be very high and is of the order of 105–106 m−1. CuInSe2 films are found to have a direct allowed transition and the optical band gap is found to be in the range 0.85–1.05 eV.
  • Keywords
    CUINSE2 , Thin films , Chemical vapour transport
  • Journal title
    Solar Energy Materials and Solar Cells
  • Serial Year
    2004
  • Journal title
    Solar Energy Materials and Solar Cells
  • Record number

    1479121