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  4. Excellent surface passivation quality using industrial-scale direct-plasma TOPCon deposition technology
 
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2018
Journal Article
Title

Excellent surface passivation quality using industrial-scale direct-plasma TOPCon deposition technology

Abstract
Passivating contacts based on a thin SiOx layer and a doped Si layer (TOPCon) are an appealing choice for pushing the efficiency of Si solar cells. One way to deposit the doped Si layer is to utilize radio‐frequency direct plasma‐enhanced chemical vapor deposition as commonly used in industry for the deposition of silicon nitride. However, due to the low operating frequency in the kHz range, there are concerns that ion bombardment might damage the thin SiOx layer and thus prevent suitable surface passivation. We demonstrate that this is not the case. Instead, the application of these layers on c‐Si results in excellent surface passivation. Minority carrier lifetimes exceeding the intrinsic bulk limit predicted by current models on 1 O cm n‐type were observed, out‐performing the reference layers. The excellent surface passivation results in an implied VOC of above 735 mV and an implied FF of almost 88% on 200 µm thick n‐type c‐Si. Furthermore, a lifetime test on 100 O cm n‐type c‐Si revealed an extraordinary lifetime of 190 ms (Dn = 1 × 1014 cm−3).
Author(s)
Steinhauser, Bernd  
Polzin, Jana-Isabelle  
Feldmann, Frank
Hermle, Martin  
Glunz, Stefan W.  
Journal
Solar RRL  
DOI
10.1002/solr.201800068
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Photovoltaik

  • Silicium-Photovoltaik

  • Oberflächen: Konditionierung

  • Passivierung

  • Lichteinfang

  • Kontaktierung und Strukturierung

  • contact

  • passivation

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