光电子学
量子效率
共发射极
窄带
材料科学
有机发光二极管
激子
偶极子
亮度
芯(光纤)
电子
电场
能量转换效率
光学
寄主(生物学)
二极管
发光二极管
共振(粒子物理)
光电二极管
静电感应
作者
Mengyu Wang,Xingdong Wang,Kaiyuan Zhang,Xianghui Tian,Lei Zhao,Shumeng Wang,Lixiang Wang
摘要
ABSTRACT Phosphor‐sensitized blue multiple resonance thermally activated delayed fluorescence (MR‐TADF) devices represent a promising approach for simultaneously achieving high efficiency and color purity through rapid exciton conversion and narrowband emission. However, realizing such devices with external quantum efficiency (EQE) exceeding 40% remains a challenge due to limited light out‐coupling efficiency caused by low horizontal dipole ratios (Θ || ) of the emitters. Herein, we reported a new horizontal‐oriented host 4CzTPS developed by symmetrically linking two bicarbazole units to a tetraphenylsilane core to achieve a linear geometry, thereby inducing horizontal alignment on the substrate. Consequently, the designed host with strong positive electrostatic potential at the tetraphenylsilane core attracts the emitter D1‐DBN with negative electrostatic potential on the B/N core through electrostatic interaction, yielding a high Θ || of 94.5% and enabling the phosphor‐sensitized blue device to achieve an EQE of 40.5%. Furthermore, by using an exciplex‐type co‐host based on 4CzTPS to decrease electron injection barrier and balance charge transport, the blue device achieved a record‐breaking EQE of 42.0%, narrowband emission with a small full width at half‐maximum of 16.2 nm, deep blue CIE coordinates of (0.116, 0.112), and the operational stability with a LT 50 of 3483 h at an initial luminance of 100 cd m −2 .
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