• Title of article

    Admittance and dielectric spectroscopy of polycrystalline semiconductors

  • Author/Authors

    Bueno، نويسنده , , Paulo R. and Varela، نويسنده , , José A. and Longo، نويسنده , , Elson، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    8
  • From page
    4313
  • To page
    4320
  • Abstract
    This text discusses about advantageous, powerful and limitations of admittance and dielectric spectroscopy in the characterization of polycrystalline semiconductors. In the context of polycrystalline semiconductors or dielectric materials, the admittance or dielectric frequency response analyses are shown to be sometimes more useful than impedance spectra analysis, mainly because information on the capacitances or deep trap states are possible to be monitored from admittance or dielectric spectra as a function of dopant concentration or annealing effects. The majority of examples of the application of admittance or dielectric analysis approach were here based on SnO2- and ZnO-based polycrystalline semiconductors devices presenting nonohmic properties. Examples of how to perform the characterization of Schottky barrier in such devices are clearly depicted. The approach is based on findings of the “true” Mott-Schottky pattern of the barrier by extracting the grain boundary capacitance value from complex capacitance diagram analysis. The equivalent circuit of such kind of devices is mainly consistent with the existence of three parallel elements: the “high-frequency” limit related to grain boundary capacitances, the complex incremental capacitance at intermediate frequency related to the deep trap relaxation and finally at low frequency region the manifestation of the conductance term representing the dc conductance of the multi-junction device.
  • Keywords
    Impedance spectroscopy , Varistor
  • Journal title
    Journal of the European Ceramic Society
  • Serial Year
    2007
  • Journal title
    Journal of the European Ceramic Society
  • Record number

    1409173