Nitrofluorene-based A–D–A electron acceptors for organic photovoltaics
Authors/Creators
- 1. Department of Chemistry, McGill University, Montreal, Quebec H3A 0B8, Canada
- 2. Centre E´nergie Mate´riaux Te´le´communications, Institut National de la Recherche Scientifique, Varennes, Que´bec J3X 1P7, Canada
- 3. De´partement de Chimie, Universite´ de Montre´al, Montre´al, Que´bec H2V 0B3, Canada
- 4. Department of Electrical Engineering, E´cole de Technologie Supe´rieure, Universite´ du Que´bec, Montre´al, Que´bec H3C 1K3, Canada
- 5. Department of Physical Chemistry and Technology of Polymers, Centre for Organic and Nanohybrid Electronics, Silesian University of Technology, Gliwice 44-100, Poland
Description
This article has been published in J. Mater. Chem. C 2023, 11, 8186-8195 (https://doi.org/10.1039/D2TC05127C).
Abstract:
We explored nitrofluorene derivatives as tunable electron-withdrawing groups for acceptor–donor–acceptor (A–D–A) type non-fullerene acceptors. Their optoelectronic properties and performance in bulk heterojunction solar cells with PBDB-T donor polymer are reported. Introducing up to four nitro groups to the fluorene unit results in deeper frontier orbital levels, reduced HOMO–LUMO gap and red-shifted absorption bands. Optimal device performance was achieved for trinitrofluorene acceptors with a solubilizing ester group in the trade-off between decreased voltage and increased photocurrent. 2D brickwork packing of the tetranitrofluorene derivative found by single crystal X-ray analysis is different from the interpenetrating 3D network found for high-efficiency A–D–A acceptors and might be the reason for the poor charge transport properties. Steric hindrance between benzothiadiazole and nitrofluorene units can be relieved by the use of furan linkers, which planarized the conjugated backbone but decreased solubility.
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