Towards efficient near-infrared fluorescent organic light-emitting diodes

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作者
Alessandro Minotto
Ibrahim Bulut
Alexandros G. Rapidis
Giuseppe Carnicella
Maddalena Patrini
Eugenio Lunedei
Harry L. Anderson
Franco Cacialli
机构
[1] University College London,Department of Physics and Astronomy and London Centre for Nanotechnology
[2] University of Oxford,Department of Chemistry, Chemistry Research Laboratory
[3] Università degli Studi di Pavia,Dipartimento di Fisica
[4] Istituto per lo Studio dei Materiali Nanostrutturati,CNR
[5] Consiglio Nazionale delle Ricerche,ISMN
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摘要
The energy gap law (EG-law) and aggregation quenching are the main limitations to overcome in the design of near-infrared (NIR) organic emitters. Here, we achieve unprecedented results by synergistically addressing both of these limitations. First, we propose porphyrin oligomers with increasing length to attenuate the effects of the EG -law by suppressing the non-radiative rate growth, and to increase the radiative rate via enhancement of the oscillator strength. Second, we design side chains to suppress aggregation quenching. We find that the logarithmic rate of variation in the non-radiative rate vs. EG is suppressed by an order of magnitude with respect to previous studies, and we complement this breakthrough by demonstrating organic light-emitting diodes with an average external quantum efficiency of ~1.1%, which is very promising for a heavy-metal-free 850 nm emitter. We also present a novel quantitative model of the internal quantum efficiency for active layers supporting triplet-to-singlet conversion. These results provide a general strategy for designing high-luminance NIR emitters.
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