Reply to: Triplet-triplet annihilation in rubrene/C60 OLEDs with electroluminescence turn-on breaking the thermodynamic limit
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Link
http://www.nature.com/articles/s41467-019-12598-4.pdf
Reference9 articles.
1. Engmann, S. Barito, A. J., Bittle, E. G., Giebink, N. C., Richter, L. J. & D. J. Gundlach. Higher order effects in organic LEDs with sub-bandgap turn-on. Nat. Commun. 10, 227 (2019).
2. Qiao, X. & Ma, D. Triplet-triplet annihilation in rubrene/C60 OLEDs with electroluminescence turn-on breaking the thermodynamic limit. Nat. Commun. https://doi.org/10.1038/s41467-019-12597-5 (2019)
3. Katahara, J. K. & Hillhouse, H. W. Quasi-Fermi level splitting and sub-bandgap absorptivity from semiconductor photoluminescence. J. Appl. Phys. 116, 173504 (2014).
4. Wurfel, P. The chemical potential of radiation. J. Phys. C Solid State Phys. 15, 3967 (1982).
5. Brigeman, A. N., Fusella, M. A., Rand, B. P. & Giebink, N. C. Nonthermal site occupation at the donor-acceptor interface of organic solar cells. Phys. Rev. Appl. 10, 034034 (2018).
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