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Integration of metal oxide nanowires in dye sensitized solar cells

Vomiero, Alberto (author)
Università di Brescia
Jimenez, G. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Baratto, C. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
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Comini, E. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Concina, Isabella (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Faglia, G. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Falasconi, M. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Ferroni, M. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Kholmanov, I. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Poli, N. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Ponzoni, A. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Todros, S. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
Sberveglieri, G. (author)
INFM-CNR SENSOR Lab. and Physics and Chemistry Department
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Università di Brescia INFM-CNR SENSOR Lab and Physics and Chemistry Department (creator_code:org_t)
Piscataway, NJ : IEEE Communications Society, 2009
2009
English.
In: 2009 34th IEEE Photovoltaic Specialists Conference : (PVSC 2009). - Piscataway, NJ : IEEE Communications Society. - 9781424429509 ; , s. 001325-001326
  • Conference paper (peer-reviewed)
Abstract Subject headings
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  • One of the most promising architectures of third generation solar cells is integration of single crystalline nanowires as electron transporters in anodes of electrochemical cells.[1-3] The nanowire-based cells aim at significantly increase cell efficiency thanks to the higher mobility of electrons along the single crystalline lattice of the nanowires with respect to traditional polycrystalline networks, greatly reducing electron-hole recombination controllable by passivation, functionalization or coaxial coating of the nanowire. The nanonetworks have been integrated in DSCs using the traditional N719 dye and the I-3/I-3 redox couple. The functional properties of the cells under 1 sun irradiation have been compared with traditional polycrystalline TiO2 photoanodes. ©2009 IEEE.

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