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High-Performance Coemissive Blue Organic Light-Emitting Diodes Combining Phosphorescence and Multiresonance
Yueqi Wang1, Yaqi Dai1, Wenhuan Wang1
1School of Flexible Electronics (Future Technologies), Institute of Advanced Materials, Nanjing Tech University, 30 South Puzhu Road, Nanjing 211816, P.R. China.
None:
Phosphor-sensitized organic light-emitting diodes (PS-OLEDs) with coemissive narrow-spectrum Pt(II) complexes and multiresonance thermally activated delayed fluorescence (MR-TADF) emitters achieved efficient, durable, and deep blue emissions. This study systematically investigated the emission properties and energy transfer in PS-OLEDs by employing a series of phosphors and MR-TADF emitters. The tetradentate Pt(II)-based blue star phosphor (PtON-PTB) with a large van der Waals radius and the MR-TADF emitter 2,12-di-tert-butyl-5,9-bis(4-(tert-butyl)phenyl)-7-(methyl-d3)-5,9-dihydro-5,9-diaza-13b-boranaphtho[3,2,1-de]anthracene (M-t-DABNA-d) with stabilized deuterated methyl were newly developed. The performance of the PS-OLEDs, including efficiency, durability, and color purity, was significantly improved using PtON-PTB and M-t-DABNA-d. A bottom-emission PS-OLED synergistically using PtON-PTB and M-t-DABNA-d achieved a maximum external quantum efficiency (EQEmax) of 21.3% and a lifetime (LT90) of 55 h with Commission Internationale de l'Elcairage (CIE) coordinates of (0.14, 0.19) at 1000 cd m-2 and comprehensively outperformed the phosphorescent OLEDs (PHOLEDs) incorporating improved tetradentate Pt(II)-based blue phosphor (PtON-TBBI). A top-emission PS-OLED employing coemitters of PtON-PTB and t-DABNA achieved a maximum EQE of 24.2% and a lifetime (LT90) of 93 h with CIE coordinates of (0.12, 0.10) at a luminance of 1000 cd m-2. This study demonstrates the promising potential of high-performance blue PS-OLEDs with coemission properties by systematically integrating fluorescent and phosphorescent emitters in the OLED devices.
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