• Title of article

    Review of surface photovoltage spectra of nano-sized semiconductor and its applications in heterogeneous photocatalysis

  • Author/Authors

    Liqiang، نويسنده , , Jing and Xiaojun، نويسنده , , Sun and Jing، نويسنده , , Shang and Weimin، نويسنده , , Cai and Zili، نويسنده , , Xu and Yaoguo، نويسنده , , Du and Honggang، نويسنده , , Fu، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    19
  • From page
    133
  • To page
    151
  • Abstract
    Heterogeneous photocatalysis is a promising technique valuable for environmental purification. Nano-sized semiconductors such as ZnO and TiO2, which is one of the most basic functional materials, have emerged as effective photocatalyst materials. The surface photovoltage spectra (SPS) can be an effective method for quickly evaluating the photocatalytic activity of semiconductor materials since it can provide a rapid, non-destructive monitor of the semiconductor surface properties such as surface band bending, surface and bulk carrier recombination and surface states, mainly showing the carrier separation and transfer behavior with the aid of light, especially the electric-field-induced surface photovoltage spectra (EFISPS), in which SPS is combined with the electric-field-modified technique. In this review, the basic principles, measurement and applications of the SPS and EFISPS are mainly discussed together with some fundamental aspects like the electric properties of semiconductor surface and the principle of electric field effect. In particular, the applications of SPS to nano-sized semiconductors such as ZnO and TiO2 in heterogeneous photocatalysis are emphasized, which involve mainly evaluating the photocatalytic activity by analyzing semiconductor surface properties such as the separation efficiency of photoinduced carriers under illumination by the SPS measurement, highlighting our own contributions. The results show that the weaker the surface photovoltage signal is, the higher the photocatalytic activity is in the case of nano-sized semiconductor photocatalysts.
  • Keywords
    Surface photovoltage spectra , Semiconductor , photocatalysis , Nanoparticle , Surface properties
  • Journal title
    Solar Energy Materials and Solar Cells
  • Serial Year
    2003
  • Journal title
    Solar Energy Materials and Solar Cells
  • Record number

    1478854