Koen Vandewal, Steve Albrecht, Eric T. Hoke, Kenneth R. Graham, Johannes Widmer, Jessica D. Douglas, Marcel Schubert, William R. Mateker, Jason T. Bloking, George F. Burkhard, Alan Sellinger, Jean M. J. Frechet, Aram Amassian, Moritz K. Riede, Michael D. McGehee, Dieter Neher, Alberto Salleo
- carriers on illumination. Efficient organic solar cells require a high yield for this process, combined with a minimum of energy losses. Here, we investigate the role of the lowest energy emissive interfacial charge-transfer state (CT1) in the charge generation process. We measure the quantum yield and the electric field dependence of charge generation on excitation of the charge-transfer (CT) state manifold viaweakly allowed, low-energy optical transitions. For a wide range of photovoltaic devices based on polymer: fullerene, small-molecule:C-60 and polymer: polymer blends, our study reveals that the internal quantum efficiency (IQE) is essentially independent of whether or not D, A or CT states with an energy higher than that of CT1 are excited. The best materials systems show an IQE higher than 90% without the need for excess electronic or vibrational energy.
MetadatenVerfasserangaben: | Koen Vandewal, Steve AlbrechtORCiDGND, Eric T. Hoke, Kenneth R. Graham, Johannes Widmer, Jessica D. Douglas, Marcel SchubertORCiD, William R. Mateker, Jason T. Bloking, George F. Burkhard, Alan Sellinger, Jean M. J. Frechet, Aram Amassian, Moritz K. Riede, Michael D. McGehee, Dieter NeherORCiDGND, Alberto Salleo |
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DOI: | https://doi.org/10.1038/NMAT3807 |
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ISSN: | 1476-1122 |
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ISSN: | 1476-4660 |
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Pubmed ID: | https://pubmed.ncbi.nlm.nih.gov/24240240 |
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Titel des übergeordneten Werks (Englisch): | Nature materials |
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Verlag: | Nature Publ. Group |
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Verlagsort: | London |
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Publikationstyp: | Wissenschaftlicher Artikel |
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Sprache: | Englisch |
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Jahr der Erstveröffentlichung: | 2014 |
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Erscheinungsjahr: | 2014 |
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Datum der Freischaltung: | 27.03.2017 |
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Band: | 13 |
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Ausgabe: | 1 |
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Seitenanzahl: | 6 |
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Erste Seite: | 63 |
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Letzte Seite: | 68 |
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Fördernde Institution: | Center for Advanced Molecular Photovoltaics [KUS-C1-015-21]; Department
of Energy, Laboratory Directed Research and Development
[DE-AC02-76SF00515]; BMBF [03IP602]; BMBF within PVcomB [FKZ 03IS2151D];
DFG [SPP 1355] |
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Organisationseinheiten: | Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie |
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Peer Review: | Referiert |
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