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  4. Self-aligned Selective Emitter for PERC Based on Inkjetable UV-Polymer
 
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2020
Conference Paper
Title

Self-aligned Selective Emitter for PERC Based on Inkjetable UV-Polymer

Abstract
In this study, we investigate and demonstrate the general feasibility of a new approach for a self-aligned selective emitter process technology for passivated emitter and rear cell (PERC) technology based on inkjet printing of an UV-polymer ink in combination with plating for metallization. First, we present the major findings about the single process development of inkjet printing (minimum printed structures of 36 mm), emitter etch-back (from Rsh = 80 O/sq to 144 O/sq with an etch time of 10 s), low temperature passivation (depositions temperatures of up to 250°C), a lift-off process (at elevated temperatures of 600°C) and demonstrate that the UV-polymer ink shows sufficient chemical and thermal stability to the processes involved. Finally, the successful integration into the PERC process sequence with upscaling to an industrial wafer size M2 and a first working cell device with an efficiency = 19.68% is demonstrated. In comparison, a conventional mask&etch selective emitter approach using inkjet printing of an hotmelt ink in combination with a semi-automated enhanced alignment algorithm between inkjet and screen printing is processed in parallel showing = 21.54% and a gain of = 0.16%abs compared to PERC cell with homogeneous emitter.
Author(s)
Efinger, Raphael  
Kafle, Bishal  
Demel, K.
Ellahi, T.
Jahn, Mike  
Meßmer, Marius
Horzel, Jörg
Zimmer, Martin  
Kluska, Sven  
Shepherd, W.
Pickrell, M.
Hermans, J.
Lohmüller, Sabrina  
Lohmüller, Elmar  orcid-logo
Keding, Roman  
Mainwork
37th European Photovoltaic Solar Energy Conference and Exhibition, EU PVSEC 2020  
Conference
European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC) 2020  
File(s)
Download (1.08 MB)
DOI
10.24406/publica-r-410773
10.4229/EUPVSEC20202020-2CV.1.47
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Photovoltaik

  • etching process

  • inkjet printing

  • PERC

  • selective emitter

  • Silicium-Photovoltaik

  • Dotierung und Diffusion

  • Oberflächen: Konditionierung

  • Passivierung

  • Lichteinfang

  • Metallisierung und Strukturierung

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