Author:
Bae Jaehyun,Sakai Mika,Tsuchiya Youichi,Ando Naoki,Chen Xian-Kai,Nguyen Thanh Ba,Chan Chin-Yiu,Lee Yi-Ting,Auffray Morgan,Nakanotani Hajime,Yamaguchi Shigehiro,Adachi Chihaya
Abstract
We studied the photophysical and electroluminescent (EL) characteristics of a series of azaborine derivatives having a pair of boron and nitrogen aimed at the multi-resonance (MR) effect. The computational study with the STEOM-DLPNO-CCSD method clarified that the combination of a BN ring-fusion and a terminal carbazole enhanced the MR effect and spin-orbit coupling matrix element (SOCME), simultaneously. Also, we clarified that the second triplet excited state (T2) plays an important role in efficient MR-based thermally activated delayed fluorescence (TADF). Furthermore, we obtained a blue–violet OLED with an external EL quantum efficiency (EQE) of 9.1%, implying the presence of a pronounced nonradiative decay path from the lowest triplet excited state (T1).
Funder
Japan Society for the Promotion of Science
Core Research for Evolutional Science and Technology
Cited by
11 articles.
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