• Title of article

    Pulsed laser deposition of piezoelectric ZnO thin films for bulk acoustic wave devices

  • Author/Authors

    Rafik Serhane، نويسنده , , Samira Abdelli-Messaci، نويسنده , , Slimane Lafane، نويسنده , , Hammouche Khales، نويسنده , , Walid Aouimeur، نويسنده , , Abdelkadder Hassein-Bey، نويسنده , , Tarek Boutkedjirt، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    7
  • From page
    572
  • To page
    578
  • Abstract
    Piezoelectric properties of ZnO thin films have been investigated for micro-electro-mechanical systems (MEMS). Wurtzite ZnO structure was prepared on different substrates (Si (1 0 0), Pt (1 1 1)/Ti/SiO2/Si and Al (1 1 1)/SiO2/Si) at different substrate temperatures (from 100 to 500 °C) by a pulsed laser deposition (PLD) technique. X-ray diffraction (XRD) characterization showed that the ZnO films were highly c-axis (0 0 2) oriented, which is of interest for various piezoelectric applications. Scanning electron microscopy (SEM) showed evidence of honeycomb-like structure on the surface and columnar structure on the cross-section. In the case of ZnO on Al, ZnO exhibited an amorphous phase at the ZnO/Al interface. The XRD measurements indicated that the substrate temperature of 300 °C was the optimum condition to obtain high quality (strongest (0 0 2) peak with the biggest associated grain size) of crystalline ZnO on Pt and on Al and that 400 °C was the optimum one on Si. ZnO on Al exhibits smallest rocking curve width than on Pt, leading to better crystalline quality. The ZnO films were used in bulk acoustic wave (BAW) transducer. Electrical measurements of the input impedance and S-Parameters showed evidence of piezoelectric response. The electromechanical coupling coefficient was evaluated as image with a quality factor Qr = 1001.4.
  • Keywords
    Pulsed laser deposition (PLD) , ZnO , Piezoelectricity , Thin films , Bulk acoustic waves (BAW)
  • Journal title
    Applied Surface Science
  • Serial Year
    2014
  • Journal title
    Applied Surface Science
  • Record number

    1008408