Large external quantum efficiency rolloff at high current densities in organic light-emitting diodes (OLEDs) is frequently caused by the quenching of radiative singlet excitons by long-lived triplet excitons [singlet-triplet annihilation (STA)]. In this study, we adopted a triplet scavenging strategy to overcome the aforementioned STA issue. To construct a model system for the triplet scavenging, we selected 2,6-dicyano-1,1-diphenyl-λ(5)Ï(4)-phosphinine (DCNP) as the emitter and 4,4'-bis[(N-carbazole)styryl]biphenyl (BSBCz) as the host material by considering their singlet and triplet energy levels. In this system, the DCNP's triplets are effectively scavenged by BSBCz while the DCNP's singlets are intact, resulting in the suppressed STA under electrical excitation. Therefore, OLEDs with a 1âwt.%-DCNP-doped BSBCz emitting layer demonstrated the greatly suppressed efficiency rolloff even at higher current densities. This finding favourably provides the advanced light-emitting performance for OLEDs and organic semiconductor laser diodes from the aspect of the suppressed efficiency rolloff.
Suppression of external quantum efficiency rolloff in organic light emitting diodes by scavenging triplet excitons.
通过清除三重态激子抑制有机发光二极管的外量子效率滚降
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作者:Karunathilaka Buddhika S B, Balijapalli Umamahesh, Senevirathne Chathuranganie A M, Yoshida Seiya, Esaki Yu, Goushi Kenichi, Matsushima Toshinori, Sandanayaka Atula S D, Adachi Chihaya
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2020 | 起止号: | 2020 Oct 1; 11(1):4926 |
| doi: | 10.1038/s41467-020-18292-0 | 研究方向: | 信号转导 |
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