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  4. Key aspects for fabrication of p-type Cz-Si PERC solar cells exceeding 22% conversion efficiency
 
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2017
Conference Paper
Title

Key aspects for fabrication of p-type Cz-Si PERC solar cells exceeding 22% conversion efficiency

Abstract
This paper gives a close-up insight into recent and future developments that are performed with industrial focus at Fraunhofer ISE's PV-TEC pilot-line to increase the energy conversion efficiency of 6-inch p-type Czochralski- grown silicon (Cz-Si) passivated emitter and rear cells (PERC) to 22% and above. First, the current status of PERC solar cell fabrication allowing for conversion efficiencies up to 21.5% is discussed. Then, we examine four key aspects in detail that need to be considered for optimizing the cells' front side to boost the cell efficiency to the 22% regime. We demonstrate selective emitter laser doping out of the phosphosilicate glass layer, which is formed by a gas phase phosphorus oxychloride diffusion process. After diffusion and wet-chemical emitter etch back, the field emitter features a very low saturation current density of only 31 fA/cm² (textured, SiNx-passivated). Specific contact resistances of 1 mOcm2 confirm the low-resistance contacting of the laser-doped surfaces using a commercially available silver screen printing paste. Apart from developing an accurate alignment procedure to match laserstructured and screen-printed layouts, we have also optimized our single-step screen-printing process for finger widths of 38 mm at 16 mm height. Based on simulations we find that efficiencies up to 22.5% are possible when the optimized process routes are integrated into PERC solar cells.
Author(s)
Werner, Sabrina  
Lohmüller, Elmar  orcid-logo
Saint-Cast, Pierre  
Greulich, Johannes M.  
Weber, Julian
Schmidt, Stefan  
Moldovan, Anamaria  
Brand, Andreas  
Dannenberg, Tobias
Mack, Sebastian  
Wasmer, Sven
Demant, Matthias  
Linse, Michael  
Ackermann, Rupprecht
Wolf, Andreas  
Preu, Ralf  
Mainwork
33rd European Photovoltaic Solar Energy Conference and Exhibition, EU PVSEC 2017  
Conference
European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC) 2017  
File(s)
Download (602.11 KB)
DOI
10.24406/publica-r-399262
10.4229/EUPVSEC20172017-2CO.11.1
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • PV Produktionstechnologie und Qualitätssicherung

  • Photovoltaik

  • Silicium-Photovoltaik

  • Dotierung und Diffusion

  • Oberflächen: Konditionierung

  • Passivierung

  • Lichteinfang

  • Kontaktierung und Strukturierung

  • Pilotherstellung von industrienahen Solarzellen

  • Messtechnik und Produktionskontrolle

  • silicon solar cell

  • PERC

  • monocrystalline

  • emitter

  • passivation

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