The effect of selective interactions at the interface of polymer–oxide hybrid solar cells

Canesi EV, Binda M, Abate A, Guarnera S, Moretti L, D'Innocenzo V, Sai Santosh Kumar R, Bertarelli C, Abrusci A, Snaith H, Calloni A, et al. (2012)
Energy & Environmental Science 5(10): 9068-9076.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Canesi, Eleonora V.; Binda, Maddalena; Abate, AntonioUniBi ; Guarnera, Simone; Moretti, Luca; D'Innocenzo, Valerio; Sai Santosh Kumar, R.; Bertarelli, Chiara; Abrusci, Agnese; Snaith, Henry; Calloni, Alberto; Brambilla, Alberto
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Abstract / Bemerkung
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which influence the final device efficiency. However, it is still very challenging to clearly track the effects of inter-molecular processes at a mesoscopic level. We report on the realization of polymer-based hybrid solar cells made of prototypical materials, namely, poly(3-hexylthiophene) (P3HT) finely infiltrated in a TiO2 scaffold, with power conversion efficiency exceeding 1%. A step-change improvement in the device performance is enabled by engineering the hybrid interface by the insertion of an appropriate molecular interlayer. An unprecedented set of characterization techniques, including time-resolved optical spectroscopy, X-ray photoemission spectroscopy, positron annihilation spectroscopy and atomistic simulations, allows us to rationalize our findings. We show that a suitable chemical structure of the interlayer molecule induces selective intermolecular interactions, and thus a preferential surface energetic landscape and morphological order at the interface which consequently drives a strong improvement in charge generation and a decrease in recombination losses.
Erscheinungsjahr
2012
Zeitschriftentitel
Energy & Environmental Science
Band
5
Ausgabe
10
Seite(n)
9068-9076
ISSN
1754-5692
eISSN
1754-5706
Page URI
https://pub.uni-bielefeld.de/record/2978921

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Canesi EV, Binda M, Abate A, et al. The effect of selective interactions at the interface of polymer–oxide hybrid solar cells. Energy & Environmental Science. 2012;5(10):9068-9076.
Canesi, E. V., Binda, M., Abate, A., Guarnera, S., Moretti, L., D'Innocenzo, V., Sai Santosh Kumar, R., et al. (2012). The effect of selective interactions at the interface of polymer–oxide hybrid solar cells. Energy & Environmental Science, 5(10), 9068-9076. https://doi.org/10.1039/c2ee22212d
Canesi, Eleonora V., Binda, Maddalena, Abate, Antonio, Guarnera, Simone, Moretti, Luca, D'Innocenzo, Valerio, Sai Santosh Kumar, R., et al. 2012. “The effect of selective interactions at the interface of polymer–oxide hybrid solar cells”. Energy & Environmental Science 5 (10): 9068-9076.
Canesi, E. V., Binda, M., Abate, A., Guarnera, S., Moretti, L., D'Innocenzo, V., Sai Santosh Kumar, R., Bertarelli, C., Abrusci, A., Snaith, H., et al. (2012). The effect of selective interactions at the interface of polymer–oxide hybrid solar cells. Energy & Environmental Science 5, 9068-9076.
Canesi, E.V., et al., 2012. The effect of selective interactions at the interface of polymer–oxide hybrid solar cells. Energy & Environmental Science, 5(10), p 9068-9076.
E.V. Canesi, et al., “The effect of selective interactions at the interface of polymer–oxide hybrid solar cells”, Energy & Environmental Science, vol. 5, 2012, pp. 9068-9076.
Canesi, E.V., Binda, M., Abate, A., Guarnera, S., Moretti, L., D'Innocenzo, V., Sai Santosh Kumar, R., Bertarelli, C., Abrusci, A., Snaith, H., Calloni, A., Brambilla, A., Ciccacci, F., Aghion, S., Moia, F., Ferragut, R., Melis, C., Malloci, G., Mattoni, A., Lanzani, G., Petrozza, A.: The effect of selective interactions at the interface of polymer–oxide hybrid solar cells. Energy & Environmental Science. 5, 9068-9076 (2012).
Canesi, Eleonora V., Binda, Maddalena, Abate, Antonio, Guarnera, Simone, Moretti, Luca, D'Innocenzo, Valerio, Sai Santosh Kumar, R., Bertarelli, Chiara, Abrusci, Agnese, Snaith, Henry, Calloni, Alberto, Brambilla, Alberto, Ciccacci, Franco, Aghion, Stefano, Moia, Fabio, Ferragut, Rafael, Melis, Claudio, Malloci, Giuliano, Mattoni, Alessandro, Lanzani, Guglielmo, and Petrozza, Annamaria. “The effect of selective interactions at the interface of polymer–oxide hybrid solar cells”. Energy & Environmental Science 5.10 (2012): 9068-9076.
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