Article (Périodiques scientifiques)
Different Bandgaps in Cu2ZnSnSe4: A High Temperature Coevaporation Study
REDINGER, Alex; SENDLER, Jan; Djemour, Rabie et al.
2015In IEEE Journal of Photovoltaics, 5 (2), p. 641-648
Peer reviewed
 

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Résumé :
We present a high-temperature Cu2ZnSnSe4 coevaporation study, where solar cells with a power conversion efficiency of 7.1 have been achieved. The process is monitored with laser light scattering in order to follow the incorporation of the Sn into the film. We observe the segregation of ZnSe at the Mo/CZTSe interface. Optical analysis has been carried out with photoluminescence and spectrophotometry. We observe strong band tailing and a bandgap, which is significantly lower than in other reported efficient CZTSe absorbers. The photoluminescence at room temperature is lower than the bandgap due to the existence of a large quantity of tail states. Finally, we present effects of low-temperature postannealing of the absorbers on ordering of the Cu/Zn atoms in CZTSe and solar cell parameters. We observe strong changes in all solar cell parameters upon annealing. The efficiency of the annealed devices is significantly reduced, although ordering is improved compared with ones made from nonannealed absorbers.
Disciplines :
Physique
Auteur, co-auteur :
REDINGER, Alex ;  University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Physics and Materials Science Research Unit
SENDLER, Jan 
Djemour, Rabie
Weiss, Thomas P.
REY, Germain 
DALE, Phillip ;  University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Physics and Materials Science Research Unit
SIEBENTRITT, Susanne ;  University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Physics and Materials Science Research Unit
Co-auteurs externes :
yes
Langue du document :
Anglais
Titre :
Different Bandgaps in Cu2ZnSnSe4: A High Temperature Coevaporation Study
Date de publication/diffusion :
2015
Titre du périodique :
IEEE Journal of Photovoltaics
ISSN :
2156-3381
eISSN :
2156-3403
Maison d'édition :
IEEE, Piscataway, Etats-Unis - New Jersey
Volume/Tome :
5
Fascicule/Saison :
2
Pagination :
641-648
Peer reviewed :
Peer reviewed
Focus Area :
Physics and Materials Science
Disponible sur ORBilu :
depuis le 02 novembre 2017

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