ACS Applied Materials & Interfaces · 2017 · 81 citations · 32 references
This work reports a new strategy of introducing remote steric effect onto the electron donor for giving the better performance of the exciplex-based organic light-emitting device (OLED). The bulky triphenylsilyl group (SiPh<sub>3</sub>) was introduced onto the fluorene bridge of 4,4'-(9H-fluorene-9,9-diyl)bis(N,N-di-p-tolylaniline) (DTAF) to create remote steric interactions for increasing the possibility of effective contacts between electron-donating chromophores and acceptor molecules, rendering the resulting exciplex to have a higher photoluminescence quantum yield (PLQY). The green exciplex device based on DSDTAF:3N-T2T (1:1) as an emitting layer exhibits a low turn-on voltage of 2.0 V, high maximum efficiencies (13.2%, 42.9 cd A<sup>-1</sup>, 45.5 lm W<sup>-1</sup>), which are higher than the device employed DTAF (without SiPh<sub>3</sub> groups) (11.6%, 35.3 cd A<sup>-1</sup>, 41.3 lm W<sup>-1</sup>) as donor under the same device structure. This strategy was further examined for blue exciplex, where the EQE was enhanced from 9.5% to 12.5% as the electron acceptor PO-T2T mixed with a tert-butyl group substituted carbazole-based donor (CPTBF) as the emitting exciplex in device. This strategy is simple and useful for developing high performance exciplex OLEDs.
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Highly efficient organic light-emitting diodes from delayed fluorescence
H. Uoyama, Kenichi Goushi, Katsuyuki Shizu et al. · Nature · 2012 · 7.8K citations