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Exploiting p-Type Delayed Fluorescence in Hybrid White OLEDs: Breaking the Trade-off between High Device Efficiency and Long Lifetime

机译:在混合型白色OLED中利用p型延迟荧光:打破了高设备效率和长寿命之间的折衷方案

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Despite that the majority of practical organic light-emitting diodes (OLEDs) still rely on blue fluorophors with low triplet (T-1) for creating blue light, hybrid white OLEDs based on low T-1 blue fluorophors are still much lagged behind in power efficiency. Here, "ideal" hybrid WOLEDs with recorded efficiency as well as low roll-off, good color-stability and long lifetime were realized by utilizing the bipolar mixed materials as the host of green phosphor as well as the spacer to reduce T-1 trap, while blue fluorophors with p-type delayed fluorescence to recycle the trapped T-1. An electron transport material with both high electron mobility and good exciton confinement ability was used to boost the TTA efficiency. Hybrid WOLEDs with maximum current efficiency, external quantum efficiency and power efficiency of 49.6 cd/A, 19.1%, and 49.3 lm/W, respectively, together with a high color rendering index of 80 and a half lifetime of over 7000 h at an initial luminescence of 1000 cd/m(2) were realized, manifesting the high potential of the strategy.
机译:尽管大多数实用的有机发光二极管(OLED)仍然依赖具有低三重态(T-1)的蓝色荧光团来产生蓝光,但基于低T-1蓝色荧光团的混合白色OLED的功率仍然远远落后效率。在这里,通过使用双极性混合材料作为绿色荧光粉的主体以及减少T-1陷阱的间隔物,实现了具有理想记录效率以及低滚降,良好的色彩稳定性和长寿命的“理想”混合WOLED。 ,而带有p型的蓝色荧光团则延迟了荧光,从而回收了被困的T-1。使用既具有高电子迁移率又具有良好的激子约束能力的电子传输材料来提高TTA效率。混合WOLED的最大电流效率,外部量子效率和功率效率分别为49.6 cd / A,19.1%和49.3 lm / W,在初始时的显色指数高达80,半衰期超过7000 h实现了1000 cd / m(2)的发光,表明该策略的高潜力。

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