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团队在Adv. Mater.上发表题为“The Combination of a Donor-Acceptor Thermally Activated Delayed Fluorescence Moiety (TADF) and a Multiresonant (MR-TADF) Emitting Core Results in Very Fast Reverse Intersystem Crossing and Outstanding Electroluminescence Performance”的研究论文

时间:2024-10-12关键词:张晓宏教授团队浏览量:17

Abstract: Here the utility and potential of an emitter design are demonstrated, consisting of a narrowband-emitting multiresonant thermally activated delayed fluorescent (MR-TADF) core that is decorated with a suitably higher energy donor-acceptor TADF moiety. Not only does this D–A TADF group offer additional channels for triplet exciton harvesting and confers faster reverse intersystem crossing (RISC) kinetics but it also acts as a steric shield, insulating the emissive MR-TADF core from aggregation-caused quenching. Two emitters, DtCzBN-CNBT1 and DtCzBN-CNBT2, demonstrate enhanced photophysical properties leading to outstanding performance of the organic light-emitting diodes (OLEDs). DtCzBN-CNBT2, containing a D–A TADF moiety, has a faster kRISC (1.1 × 105 s−1) and higher photoluminescence quantum yield (ΦPL: 97%) compared to DtCzBN-CNBT1 (0.2 × 105 s−1ΦPL: 90%), which contains a D–A moiety that itself is not TADF. The sensitizer-free OLEDs with DtCzBN-CNBT2 achieve a record-high maximum external quantum efficiency (EQEmax) of 40.2% and showed milder efficiency roll-off (EQE1000 of 20.7%) compared to the DtCzBN-CNBT1-based devices (EQEmax of 37.1% and EQE1000 of 11.9%).


链接:https://advanced.onlinelibrary.wiley.com/doi/full/10.1002/adma.202412761