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Nanophotonics-based low-Temperature PECVD epitaxial crystalline silicon solar Cells

  • Wanghua Chen
  • , Romain Cariou
  • , Martin Foldyna
  • , Valerie Depauw
  • , Christos Trompoukis
  • , Emmanuel Drouard
  • , Loic Lalouat
  • , Abdelmounaim Harouri
  • , Jia Liu
  • , Alain Fave
  • , Régis Orobtchouk
  • , Fabien Mandorlo
  • , Christian Seassal
  • , Inès Massiot
  • , Alexandre Dmitriev
  • , Ki Dong Lee
  • , Pere Rocai Cabarrocas
  • Université Paris-Saclay
  • Imec
  • Université de Lyon
  • Chalmers University of Technology
  • Obducat Technologies AB

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

8 Citations (Scopus)

Résumé

The enhancement of light absorption via nanopatterning in crystalline silicon solar cells is becoming extremely important with the decrease of wafer thickness for the further reduction of solar cell fabrication cost. In order to study the influence of nanopatterning on crystalline silicon thin-film solar cells, we applied two lithography techniques (laser interference lithography and nanoimprint lithography) combined with two etching techniques (dry and wet) to epitaxial crystalline silicon thin films deposited via plasma-enhanced chemical vapor deposition at 175 °C. The influence of nanopatterning with different etching profiles on solar cell performance is studied. We found that the etching profiles (pitch, depth and diameter) have a stronger impact on the passivation quality (open circuit voltage and fill factor) than on the optical performance (short circuit current density) of the solar cells. We also show that nanopatterns obtained via wet-etching can improve solar cell performance; and in contrast, dry-etching leads to poor passivation related to the etching profile, surface damage, and/or contamination introduced during the etching process.

langue originaleAnglais
Numéro d'article125603
journalJournal of Physics D: Applied Physics
Volume49
Numéro de publication12
Les DOIs
étatPublié - 1 janv. 2016
Modification externeOui

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