• DocumentCode
    1471421
  • Title

    Efficiency Potential of n -Type Silicon Solar Cells With Aluminum-Doped Rear p^{+} Emitter

  • Author

    Rüdiger, Marc ; Schmiga, Christian ; Rauer, Michael ; Hermle, Martin ; Glunz, Stefan W.

  • Author_Institution
    Fraunhofer Inst. for Solar Energy Syst. (ISE), Freiburg, Germany
  • Volume
    59
  • Issue
    5
  • fYear
    2012
  • fDate
    5/1/2012 12:00:00 AM
  • Firstpage
    1295
  • Lastpage
    1303
  • Abstract
    We present a detailed analysis on the efficiency potential of n -type silicon solar cells with aluminum-doped rear p+ emitter for industrial applications by means of 2-D and 3-D numerical simulations. Thereby, this study examines successively three different regions of the solar cell. First, the front side is investigated by discussing the influence of different uniform and selective front surface fields (FSFs). Additionally, the case of omitting a full-area FSF and only applying local heavily doped areas below the front contacts is analyzed. Second, we look into the base and how doping concentrations and finger distance variations influence each other. Finally, the back side of this solar cell concept is examined by 3-D simulations, demonstrating the effect of a surface-passivated and locally contacted aluminum-doped rear p+ emitter on the cell performance. As a result of our considerations, we have determined an efficiency potential for this n+np+ cell concept close to 21%.
  • Keywords
    aluminium alloys; elemental semiconductors; numerical analysis; semiconductor doping; silicon; solar cells; 2D numerical simulations; 3D numerical simulation; Al; Si; aluminum-doped rear p+ emitter; doping concentrations; finger distance variations; front contacts; n-type silicon solar cells; selective front surface fields; surface-passivated effect; Doping; Neodymium; Numerical models; Photovoltaic cells; Semiconductor process modeling; Silicon; $n$ -type silicon solar cells; Aluminum-doped emitter; photovoltaic cells;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2012.2187655
  • Filename
    6170885