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research article

New progress in the fabrication of n–i–p micromorph solar cells for opaque substrates

Biron, Rémi  
•
Hänni, Simon  
•
Boccard, Mathieu  
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2013
Solar Energy Materials and Solar Cells

In thispaper,weinvestigatetandemamorphous/microcrystallinesiliconsolarcellswithasymmetric intermediatereflectorsgrowninthen–i–psubstrateconfiguration.Wecomparedifferenttypesof substrateswithrespecttotheirlight-trappingpropertiesaswellastheirinfluenceonthegrowthof single-junctionmicrocrystallinecells.Ourmostpromisingbackreflectorcombinesatexturedzinc oxide filmgrownbylow-pressurechemicalvapordeposition,asilverfilmforreflection,andazinc oxide bufferlayer.Grownonthissubstrate,microcrystallinecellsexhibitexcellentresponseinthe infrared whilekeepinghighopen-circuitvoltageandfillfactor,leadingtoefficienciesofupto10.0%. After optimizingthemorphologyoftheasymmetricintermediatereflector,weachieveann–i–p micromorphsolarcellstabilizedefficiencyof11.6%,using270nmand1.7 mm ofsiliconfortheabsorber layer oftheamorphoustopcellandthemicrocrystallinebottomcell,respectively.Usingthisoriginal devicearchitecture,wereachefficienciesclosetothoseofstate-of-the-artn–i–pandp–i–nmicro- morph devices,demonstratingapromisingroutetodeposithigh-efficiencythin-filmsiliconsolarcells on opaquesubstrates.

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Type
research article
DOI
10.1016/j.solmat.2013.02.032
Web of Science ID

WOS:000319486700019

Author(s)
Biron, Rémi  
Hänni, Simon  
Boccard, Mathieu  
Pahud, Céline
Söderström, Karin  
Duchamp, Martial
Dunin-Borkowski, Rafal
Bugnon, Grégory  
Ding, Laura  
Nicolay, Sylvain  
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Date Issued

2013

Publisher

Elsevier

Published in
Solar Energy Materials and Solar Cells
Volume

114

Start page

147

End page

155

Subjects

Thin film silicon solar cells

•

Micromorph

•

Light trapping

•

Back reflector

•

Intermediate reflector

Note

IMT-NE Number: 692

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
PV-LAB  
Available on Infoscience
April 10, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/91413
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