• DocumentCode
    1429184
  • Title

    Organic Solar Cell Efficiencies Under the Aspect of Reduced Surface Recombination Velocities

  • Author

    Wagenpfahl, Alexander ; Deibel, Carsten ; Dyakonov, Vladimir

  • Author_Institution
    Exp. Phys. VI, Julius-Maximilians-Univ. of Wurzburg, Würzburg, Germany
  • Volume
    16
  • Issue
    6
  • fYear
    2010
  • Firstpage
    1759
  • Lastpage
    1763
  • Abstract
    The charge carrier mobility is a key parameter for the organic bulk heterojunction solar cell efficiency. It was recently shown that the interplay charge carrier transport and recombination, both depending on electron and hole mobilities, lead to a point of maximum power conversion efficiency at a finite mobility. Changes of bulk and surface recombination rate, however, can strongly influence this behavior. These processes were previously not considered adequately, as surface recombination velocities of infinity were implicitly assumed or bulk recombination parameters not discussed in detail. In this manuscript, using a macroscopic effective medium simulation, we consider how a reduced bulk recombination process in combination with finite surface recombination velocities affect the power conversion efficiency. Instead of a maximum efficiency at a specific charge carrier mobility, we show that with realistic assumptions and passivated surfaces the efficiency is increased further, saturating only at higher mobilities. Thus, a mobility optimization is more important for the solar cell performance than previously shown.
  • Keywords
    electron mobility; hole mobility; solar cells; surface recombination; bulk recombination parameters; charge carrier mobility; charge recombination; electron mobilities; hole mobilities; interplay charge carrier transport; macroscopic effective medium simulation; maximum power conversion efficiency; mobility optimization; organic bulk heterojunction solar cell efficiency; passivated surfaces; reduced bulk recombination process; surface recombination velocities; Charge carrier mobility; Charge carrier processes; Charge carriers; Electron mobility; Heterojunctions; Organic semiconductors; Photovoltaic cells; Power conversion; Radiative recombination; Spontaneous emission; Charge carrier mobility; organic semiconductors; solar cell efficiency; surface recombination;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/JSTQE.2010.2042142
  • Filename
    5422714