• DocumentCode
    60118
  • Title

    CIGS Cells and Modules With High Efficiency on Glass and Flexible Substrates

  • Author

    Powalla, Michael ; Witte, Wolfram ; Jackson, P. ; Paetel, Stefan ; Lotter, Erwin ; Wuerz, Roland ; Kessler, Friedrich ; Tschamber, Carsten ; Hempel, Wolfram ; Hariskos, Dimitrios ; Menner, Richard ; Bauer, A. ; Spiering, Stefanie ; Ahlswede, Erik ; Friedl

  • Author_Institution
    Zentrum fur Sonnenenergieund Wasserstoff-Forschung Baden-Wurttemberg (ZSW), Stuttgart, Germany
  • Volume
    4
  • Issue
    1
  • fYear
    2014
  • fDate
    Jan. 2014
  • Firstpage
    440
  • Lastpage
    446
  • Abstract
    Thin-film solar cells based on Cu(In,Ga)(Se,S) 2 (CIGS) have demonstrated both high efficiencies and a high cost-reduction potential in industrial production. This way, future CIGS module production lines can be profitable even for scales below the GW range. Among the different technologies, only the coevaporation method has demonstrated efficiencies above 20%, approaching the record values of polycrystalline Si cells. The main focus of this contribution is on the new results of the ZSW cell line with efficiencies above 20%, as well as on the mini-module line on glass substrates. Mini modules (10 cm × 10 cm) with efficiencies in the range of 17% give a proof of concept for industrial-sized modules. ZSW is also developing flexible cells and modules, transferring the processes from the glass-based technology. We achieved 18.6% cell efficiency on metal substrates and a 15.4% efficient mini module could be demonstrated with adapted methods of module patterning. In order to develop industrially relevant processes for foils, we are running a roll-to-roll deposition plant. Additionally, we have improved CIGS cell efficiencies with alternative buffers to certified 19.0% for solution-grown Zn(O,S), to 16.4% for sputtered Zn(O,S), and 17.1% for evaporated In 2S 3. Our cells deposited by vacuum-free methods exhibit an efficiency of 8.5% with a nanoparticle-based process.
  • Keywords
    II-VI semiconductors; buffer layers; cadmium compounds; copper compounds; gallium compounds; indium compounds; nanofabrication; nanoparticles; selenium compounds; semiconductor growth; semiconductor thin films; solar cells; ternary semiconductors; vacuum deposition; wide band gap semiconductors; zinc compounds; CIGS cells; CIGS modules; Cu(InGa)(SeS)2-CdS; Cu(InGa)(SeS)2-ZnO; Cu(InGa)(SeS)2-ZnS; SiO2; buffers; cell efhciency; coevaporation; flexible cells; flexible modules; flexible substrates; foils; glass substrates; glass-based technology; metal substrates; minimodule line; nanoparticle-based process; polycrystalline silicon cells; roll-to-roll deposition plant; solution grown zinc oxide; solution grown zinc sulfide; sputtering; thin film solar cells; vacuum free method; Buffer layers; Glass; Photovoltaic cells; Production; Steel; Substrates; Buffer layers; CIGS; coevaporation; modules; nonvacuum deposition; roll-to-roll; solar cells;
  • fLanguage
    English
  • Journal_Title
    Photovoltaics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    2156-3381
  • Type

    jour

  • DOI
    10.1109/JPHOTOV.2013.2280468
  • Filename
    6642067