Dimesitylarylborane-based luminescent emitters exhibiting highly-efficient thermally activated delayed fluorescence for organic light-emitting diodes

被引:75
作者
Kitamoto, Yuichi [1 ]
Namikawa, Taketo [2 ]
Suzuki, Takatsugu [2 ]
Miyata, Yasuo [2 ]
Kita, Hiroshi [3 ]
Sato, Tetsuo [4 ]
Oi, Shuichi [1 ]
机构
[1] Tohoku Univ, New Ind Creat Hatchery Ctr, Aoba Ku, 6-6-11 Aramaki Aoba, Sendai, Miyagi 9808579, Japan
[2] Konica Minolta Inc, Corp R&D Headquarters, Adv Technol Ctr, Technol Res Grp, 2970 Ishikawa Machi, Hachioji, Tokyo 1928505, Japan
[3] Konica Minolta Inc, Adv Layers Business Unit, Organ Mat Labs, 2970 Ishikawa Machi, Hachioji, Tokyo 1928505, Japan
[4] Sendai Natl Coll Technol, Liberal Arts, 48 Nodayama, Natori, Miyagi 9811239, Japan
关键词
Thermally activated delayed fluorescence; Organic light-emitting diodes; Donor-acceptor triarylborane; ORGANOBORON COMPOUNDS; QUANTUM EFFICIENCY; TRACE OXYGEN; BLUE; SINGLET; GREEN; DESIGN; ELECTROLUMINESCENCE; COMPLEXES; EMISSION;
D O I
10.1016/j.orgel.2016.04.030
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Triarylboranes are widely used as luminescent molecules. However, there are few reports focused on thermally activated delayed fluorescence (TADF) characteristics. In this study, new donor-acceptor triarylboranes exhibiting TADF characteristics are designed, synthesized, and applied to organic light-emitting diodes (OLEDs) as an emitter. Electro-accepting dimesitylphenylborane connected with carbazole (7), 9,9-dimethylacridane (8), and phenoxazine (9) as electron-donating units are synthesized in only two steps with good yield. Compounds 8 and 9 exhibit light blue and green TADF with good PL quantum yields of 89 and 87% in toluene, respectively. On the other hand, compound 7 shows normal deep blue fluorescence without TADF characteristics. Density functional theory and time-dependent density functional theory studies reveal that high electron-donating ability of donor unit and large dihedral angles between cross-linking phenylene and donor units are attributed to spatially separate the HOMO and LUMO, which results in lowering the energy gap between lowest singlet (S-1) and triplet (T-1) excited states and accelerating reverse intersystem crossing of excitons from T-1 to S-1 states. OLEDs using compounds 8 and 9 as emitters exhibit light blue and green emission with very good external quantum efficiencies of 16.0 and 17.3%, respectively. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:216 / 225
页数:10
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