Poly(3‐hexylthiophene) Fibers for Photovoltaic Applications
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- 18 April 2007
- journal article
- research article
- Published by Wiley in Advanced Functional Materials
- Vol. 17 (8) , 1377-1384
- https://doi.org/10.1002/adfm.200600922
Abstract
A new method for the preparation of active layers of polymeric solar cells without the need for thermal post‐treatment to obtain optimal performance is presented. Poly(3‐hexylthiophene) (P3HT) nanofibers are obtained in highly concentrated solutions, which enables the fabrication of nanostructured films on various substrates. Here, the preparation of these fibers along with their characterization in solution and in the solid state is detailed. By mixing these nanofibers with a molecular acceptor such as [6,6]‐phenyl C61‐butyric acid methyl ester (PCBM) in solution, it is possible to obtain in a simple process a highly efficient active layer for organic solar cells with a demonstrated power conversion efficiency (PCE) of up to 3.6 %. The compatibility of the room‐temperature process developed herein with commonly used plastic substrates may lead to applications such as the development of large‐area flexible solar cells.Keywords
This publication has 28 references indexed in Scilit:
- High-efficiency solution processable polymer photovoltaic cells by self-organization of polymer blendsNature Materials, 2005
- Nanoscale Morphology of High-Performance Polymer Solar CellsNano Letters, 2005
- Influence of nanomorphology on the photovoltaic action of polymer–fullerene compositesNanotechnology, 2004
- Organic photovoltaics: technology and marketSolar Energy Materials and Solar Cells, 2004
- Flexible large area polymer solar cells based on poly(3-hexylthiophene)/fullereneSolar Energy Materials and Solar Cells, 2004
- One-Dimensional Aggregation of Regioregular PolyalkylthiophenesNano Letters, 2003
- 2.5% efficient organic plastic solar cellsApplied Physics Letters, 2001
- Polymer Photovoltaic Cells: Enhanced Efficiencies via a Network of Internal Donor-Acceptor HeterojunctionsScience, 1995
- Efficient photodiodes from interpenetrating polymer networksNature, 1995
- Photoinduced Electron Transfer from a Conducting Polymer to BuckminsterfullereneScience, 1992