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  5. Monolithic Route to Efficient Dye-sensitized Solar Cells Employing Diblock Copolymers for Mesoporous TiO2

Monolithic Route to Efficient Dye-sensitized Solar Cells Employing Diblock Copolymers for Mesoporous TiO2

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Monolithic Route to Efficient Dye-sensitized Solar Cells Employing Diblock Copolymers for Mesoporous TiO2.pdf (384.95 KB)
main article
Permanent Link(s)
https://hdl.handle.net/1813/33692
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Energy and Sustainability Publications
Author
Nedelcu, Mihaela
Guldin, Stefan
Orilall, M. Christopher
Lee, Jinwoo
Huttner, Sven
Crossland, Edward J.W.
Warren, Scott C.
Ducati, Caterina
Laity, Pete R.
Eder, Dominik
Wiesner, Ulrich
Steiner, Ullrich
Snaith, Henry J.
Abstract

We present a material and device based study on the fabrication of mesoporous TiO2 and its integration into dye-sensitized solar cells. Poly(isoprene-block-ethyleneoxide) (PI-b-PEO) copolymers were used as structure directing agents for the sol–gel based synthesis of nanoporous monolithic TiO2 which was subsequently ground down to small particles and processed into a paste. The TiO2 synthesis and the formation of tens of micrometre thick films from the paste is a scalable approach for the manufacture of dye sensitised solar cells (DSCs). In this study, we followed the self-assembly of the material through the various processing stages of DSC manufacture. Since this approach enables high annealing temperatures while maintaining porosity, excellent crystallinity was achieved. Internal TiO2 structures ranging from the nanometre to micrometre scale combine a high internal surface area with the strong scattering of light, which results in high light absorption and an excellent full-sun power conversion efficiency of up to 6.4% in a robust, 3 μm thick dye-sensitized solar cell.

Sponsorship
M.N., S.H., and U.S. acknowledge the European RTN-6
Network ‘‘Polyfilm’’ and S.H. acknowledges a scholarship of the
Bayerische Graduiertenf€orderung. C.D. acknowledges the Royal
Society for Funding. This work was funded in part by the
EPSRC Nanotechnology Grand Challenges: Energy grant (EP/
F056702/1), the Department of Energy (DE-FG02 87ER45298)
through the Cornell Fuel Cell Institute (CFCI), the National Science Foundation (DMR-0605856), and the Cornell University KAUST Center for Research and Education. The sabbatical leaves of U.W. was supported by the Leverhulme Trust and EPSRC. We thank Mathias Kolle for help with Fig. 1 and Richard Friend for valuable discussions and support.
Date Issued
2009-12-23
Publisher
Royal Society of Chemistry
Keywords
Dye-sensitized solar cells
•
diblock copolymers
Previously Published as
Journal of Materials Chemistry, 20, Dec 2009, 1261-1268
Type
article

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