• DocumentCode
    3524443
  • Title

    Light harvesting schemes for high efficiency thin film silicon solar cells

  • Author

    Despeisse, Matthieu ; Boccard, Mathieu ; Battaglia, Corsin ; Bugnon, Gregory ; Charrière, Mathieu ; Garcia, Loïc ; Bonnet-Eymard, Maximilien ; Escarre, Jordi ; Cuony, Peter ; Stuckelberger, Michael ; Parascandolo, Gaetano ; Hanni, Simon ; Löfgren, Linus ;

  • Author_Institution
    Lab. of Photovoltaics & Thin Film Electron., Ecole Polytech. Fed. de Lausanne (EPFL), Neuchâtel, Switzerland
  • fYear
    2012
  • fDate
    3-8 June 2012
  • Abstract
    In Thin Film Silicon (TF-Si) solar cells light harvesting schemes must guarantee an efficient light trapping in the thin absorber layers without decreasing the silicon layers quality and consecutively the p-i-n diodes electrical performance. TF-Si solar cells resilience to the substrate roughness is reported to be possibly improved through optimizations of the cell design and of the silicon deposition processes. By further tailoring the superstrate texture, amorphous silicon / microcrystalline silicon (a-Si:H/μc-Si:H) tandem solar cells with an initial efficiency up to 13.7 % and a stabilized efficiency up to 11.8 % are demonstrated on single-scale textured superstrates. An alternative approach combining large and smooth features nanoimprinted onto a transparent lacquer with small and sharp textures from as-grown LPCVD ZnO is then shown to have a high potential for further increasing TF-Si devices efficiency. First results demonstrate up to 14.1 % initial efficiency for a TF-Si tandem solar cell.
  • Keywords
    chemical vapour deposition; elemental semiconductors; p-i-n diodes; semiconductor growth; silicon; solar cells; substrates; Si; amorphous silicon-microcrystalline silicon tandem solar cells; as-grown LPCVD zinc oxide; cell design optimization; light harvesting schemes; light trapping; p-i-n diode electrical performance; silicon deposition process; silicon layer quality; single-scale textured superstrates; substrate roughness; thin absorber layers; thin film silicon solar cells; transparent lacquer; Abstracts; Glass; Laboratories; Silicon; Substrates; Zinc oxide; amorphous silicon; light trapping; photovoltaic cells; silicon; tandem cells; thin film;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Photovoltaic Specialists Conference (PVSC), 2012 38th IEEE
  • Conference_Location
    Austin, TX
  • ISSN
    0160-8371
  • Print_ISBN
    978-1-4673-0064-3
  • Type

    conf

  • DOI
    10.1109/PVSC.2012.6318218
  • Filename
    6318218