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Highly efficient and color-stable hybrid warm white organic light-emitting diodes using a blue material with thermally activated delayed fluorescence

机译:使用具有热激活延迟荧光的蓝色材料制成的高效且颜色稳定的混合暖白色有机发光二极管

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Hybrid white organic light-emitting diodes (WOLEDs) often undergo triplet energy loss through the triplet state of the blue fluorophors. Here, blue fluorophors with thermally activated delayed fluorescence (TADF) are introduced to solve this problem. The triplet excitons formed on blue TADF fluorophors can be harvested by either energy transfer to the low-lying triplet states of the phosphor or thermal upconversion to the emissive singlet states, eliminating the energy loss. Moreover, device structures are wisely designed to take full advantages of the charge trapping ability of the TADF dopant, 4,5-bis(carbazol-9-yl)-1,2-dicyanobenzene, achieving a color-stable warm white emission. Remarkably, a maximum forward viewing external quantum efficiency (EQE) of 22.5% and a maximum forward viewing power efficiency (PE) of 47.6 Im W~(-1) are achieved. These values are among the highest reported for hybrid WOLEDs and even comparable to full-phosphorescent ones, demonstrating that the strategy reported here is promising for OLED lighting.
机译:混合白色有机发光二极管(WOLED)通常会通过蓝色荧光团的三重态而遭受三重态能量损失。在这里,引入具有热激活延迟荧光(TADF)的蓝色荧光团来解决此问题。可以通过将能量转移到荧光粉的低价三重态或通过热上转换为发射单重态来收集在蓝色TADF荧光团上形成的三重态激子,从而消除了能量损失。此外,明智地设计器件结构,以充分利用TADF掺杂剂4,5-双(咔唑-9-基)-1,2-二氰基苯的电荷捕获能力,从而实现颜色稳定的暖白色发射。显着地,实现了最大前视外部量子效率(EQE)为22.5%和最大前视功率效率(PE)为47.6 Im W〜(-1)。这些值是报道的混合WOLED的最高值,甚至与全磷光的WOLED相当,这表明此处报道的策略对于OLED照明很有希望。

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