• Title of article

    Optoelectronic study and annealing stability of room temperature pulsed laser ablated ZnSe polycrystalline thin films

  • Author/Authors

    Taj Muhammad Khan، نويسنده , , M. Zakria، نويسنده , , Mushtaq Ahmad، نويسنده , , Rana I. Shakoor، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    10
  • From page
    97
  • To page
    106
  • Abstract
    In principal, we described stability of the room temperature ZnSe thin films with thermal annealing deposited onto glass by pulsed laser deposition technique using third harmonic 355 nm of Nd: YAG laser beam. Optoelectronic analysis and stability with thermal annealing was described in terms of structural and optical properties. These properties were investigated via X-ray diffraction, atomic force microscope, scanning electron microscope, Raman, Fourier transform infrared and photoluminescence spectroscopies. From the strong reflection corresponding to the (1 1 1) plane (2θ=27.48°) and the longitudinal optical “LO” phonon modes at 250 cm−1 and 500 cm−1 in the X-ray diffraction and Raman spectra, a polycrystalline zincblende structure of the film was established. At 300 and 350 °C annealing temperatures, the film crystallites were preferentially oriented with the (1 1 1) plane parallel to the substrate and became amorphous at 400 °C. Atomic force microscopic images showed that the morphologies of ZnSe films became smooth with root mean squared roughness 9.86 nm after annealing at 300 and 350 °C while a rougher surface was observed for the amorphous film at 400 °C. Fourier transform infrared study illustrated the chemical nature and Zn–Se bonding in the deposited films. For the as-deposited and annealed samples at 300 and 350 °C, scanning electron micrographs revealed mono-dispersed indistinguishable ZnSe grains and smooth morphological structure which changed to a cracking and bumpy surface after annealing at 400 °C. The physical phenomenon of annealing induced morphological changes could be explained in terms of “structure zone model”. Excitonic emission at 456 nm was observed for both as-deposited and annealed film at 350 °C. The transmission spectrum shows oscillatory behavior because of the thin film interference and exhibited a high degree of transparency down to a wavelength ~500 nm in the IR region. Energy band-gap was increased from 2.65 eV to 2.7 eV for the annealed crystalline film at 350 °C which was further decreased to 2.56 eV for the annealed amorphous film at 400 °C. The observed results manifested that room temperature pulsed laser ablated ZnSe thin film showed excellent structural, optical and morphological stability up 350 °C for optoelectronic applications.
  • Keywords
    pulsed laser deposition , Raman spectroscopy , XRD , Zinc selenide , Photoluminescence
  • Journal title
    Journal of Luminescence
  • Serial Year
    2014
  • Journal title
    Journal of Luminescence
  • Record number

    1263743