Toward a Rational Design of Poly(2,7-Carbazole) Derivatives for Solar Cells
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- 21 December 2007
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 130 (2) , 732-742
- https://doi.org/10.1021/ja0771989
Abstract
On the basis of theoretical models and calculations, several alternating polymeric structures have been investigated to develop optimized poly(2,7-carbazole) derivatives for solar cell applications. Selected low band gap alternating copolymers have been obtained via a Suzuki coupling reaction. A good correlation between DFT theoretical calculations performed on model compounds and the experimental HOMO, LUMO, and band gap energies of the corresponding polymers has been obtained. This study reveals that the alternating copolymer HOMO energy level is mainly fixed by the carbazole moiety, whereas the LUMO energy level is mainly related to the nature of the electron-withdrawing comonomer. However, solar cell performances are not solely driven by the energy levels of the materials. Clearly, the molecular weight and the overall organization of the polymers are other important key parameters to consider when developing new polymers for solar cells. Preliminary measurements have revealed hole mobilities of about 1 × 10-3 cm2·V-1·s-1 and a power conversion efficiency (PCE) up to 3.6%. Further improvements are anticipated through a rational design of new symmetric low band gap poly(2,7-carbazole) derivatives.This publication has 77 references indexed in Scilit:
- Theoretical investigation of the substituent effect on the electronic and optical properties of photochromic dithienylethene derivativesJournal of Photochemistry and Photobiology A: Chemistry, 2007
- Influence of the Substituent and Polymerization Methodology on the Properties of Chiral Poly(dithieno[3,2-b:2‘,3‘-d]pyrrole)sMacromolecules, 2007
- Lifetimes of organic photovoltaics: Design and synthesis of single oligomer molecules in order to study chemical degradation mechanismsSolar Energy Materials and Solar Cells, 2006
- Stoichiometry dependence of charge transport in polymer/methanofullerene and polymer/C70 derivative based solar cellsOrganic Electronics, 2006
- Acceptor influence on hole mobility in fullerene blends with alternating copolymers of fluoreneApplied Physics Letters, 2006
- Noncrystalline Phases in Poly(9,9-di-n-octyl-2,7-fluorene)The Journal of Physical Chemistry B, 2005
- Polymer Solar Cells Based on a Low-Bandgap Fluorene Copolymer and a Fullerene Derivative with Photocurrent Extended to 850 nmAdvanced Functional Materials, 2005
- Compositional Dependence of the Performance of Poly(p-phenylene vinylene):Methanofullerene Bulk-Heterojunction Solar CellsAdvanced Functional Materials, 2005
- Crystalline Forms and Emission Behavior of Poly(9,9-di-n-octyl-2,7-fluorene)Macromolecules, 2004
- Alternate donor-acceptor small-band-gap semiconducting polymers; Polysquaraines and polycroconainesSynthetic Metals, 1993