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2010
Conference Paper
Title

n-Type silicon - enabling efficiencies > 20% in industrial production

Abstract
In the first part of this paper we estimate the efficiency potential of crystalline silicon solar cells on conventionally pulled p-type boron-doped Czochralski-grown silicon with typical oxygen concentrations. Taking into account an industrial high-efficiency cell structure featuring fine-line metallization, shallow and well-passivated emitter and a rear surface structure with dielectric passivation and local laser-fired point contacts, the maximum achievable efficiency is around 20%. The main limitation of such a cell is due to the rather low bulk lifetime after light-induced degradation. Even when avoiding the metastable boron-oxygen defect by using Gallium-doped or magnetic Cz-silicon, it has to be kept in mind that the detrimental impact of metal contaminations on p-type silicon is greater than on n-type silicon. A potential strategy to reduce this loss is the use of n-type silicon. Therefore, the second part of the paper discusses different architectures for solar cells on n-type silicon substrates and shows the latest results achieved at Fraunhofer ISE in this field.
Author(s)
Glunz, Stefan W.  
Pysch, D.
Biro, Daniel  
Bivour, Martin  
Benick, Jan  
Rüdiger, Marc
Hermle, Martin  
Rauer, Michael  
Suwito, Dominik
Richter, Armin  
Schmiga, Christian  
Reichel, Christian  
Wolf, Andreas  
Preu, Ralf  
Mainwork
35th IEEE Photovoltaic Specialists Conference, PVSC 2010. Vol.1  
Conference
Photovoltaic Specialists Conference (PVSC) 2010  
File(s)
Download (459.74 KB)
DOI
10.24406/publica-r-368654
10.1109/PVSC.2010.5614203
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Solarzellen - Entwicklung und Charakterisierung

  • Silicium-Photovoltaik

  • Herstellung und Analyse von hocheffizienten Solarzellen

  • Industrielle und neuartige Solarzellenstrukturen

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