A Thieno[3,4- c ]pyrrole-4,6-dione-Based Copolymer for Efficient Solar Cells
Institute for Microstructural Sciences · Université Laval
Abstract
A new low-band-gap thieno[3,4-c]pyrrole-4,6-dione-based copolymer, PBDTTPD, has been designed and synthesized. PBDTTPD is soluble in chloroform or o-dichlorobenzene upon heating and shows a broad absorption in the visible region. The HOMO and LUMO energy levels were estimated to be at -5.56 and -3.75 eV, respectively. These electrochemical measurements fit well with an optical bandgap of 1.8 eV. When blended with PC(71)BM, this polymer demonstrated a power conversion efficiency of 5.5% in a bulk-heterojunction photovoltaic device having an active area of 1.0 cm(2).
Citation impact
- FWCI
- 113.82
- Percentile
- 100%
- References
- 36
Authors
7- YZYingping ZouCorresponding
Institute for Microstructural Sciences, Université Laval
- ANAhmed Najari
Institute for Microstructural Sciences, Université Laval
- PBPhilippe Berrouard
Institute for Microstructural Sciences, Université Laval
- SBSerge Beaupré
Université Laval, Institute for Microstructural Sciences
- BRBadrou Réda Aïch
Université Laval, Institute for Microstructural Sciences
Topics & keywords
- Chemistry
- Copolymer
- Band gap
- Pyrrole
- Polymer solar cell
- Energy conversion efficiency
- Chloroform
- Electrochemistry
- Affordable and clean energy