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  4. High Light-to-Energy Conversion Efficiencies for Solar Cells Based on Nanostructured ZnO Electrodes
 
research article

High Light-to-Energy Conversion Efficiencies for Solar Cells Based on Nanostructured ZnO Electrodes

Rensmo, H.
•
Keis, K.
•
Lindstroem, H.
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1997
The Journal of Physical Chemistry B

Photoelectrochem. properties of nanostructured ZnO thin film electrodes have been investigated in the UV and visible regions. For films consisting of 15 nm large undoped crystallites a max. monochromatic current conversion efficiency of 58% was obtained in the visible using a ruthenium-based dye as a sensitizer. The overall solar energy conversion efficiencies for this film was 2%. In comparison, sensitized films consisting of 150 nm large Al-doped crystallites yield a monochromatic current conversion efficiency of 31% and an overall solar energy conversion efficiency of 0.5%. The study also shows that nanostructured ZnO may give high efficiencies in the UV region, approaching unity for the Al-doped films.

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Type
research article
DOI
10.1021/JP962918B
Author(s)
Rensmo, H.
Keis, K.
Lindstroem, H.
Soedergren, S.
Solbrand, A.
Hagfeldt, A.  
Lindquist, S.-E.
Wang, L. N.
Muhammed, M.
Date Issued

1997

Published in
The Journal of Physical Chemistry B
Volume

101

Start page

2598

End page

2601

Subjects

photoelectrochem electrode zinc oxide

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LSPM  
Available on Infoscience
July 6, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/115621
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