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Selectively Modulating Triplet Exciton Formation in Host Materials for Highly Efficient Blue Electrophosphorescence

机译:选择性调节主体材料中的三重态激子形成,以实现高效的蓝色电致磷光

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摘要

The concept of limiting the triplet exciton formation to fundamentally alleviate triplet-involved quenching effects is introduced to construct host materials for highly efficient and stable blue phosphorescent organic light-emitting diodes (PhOLEDs). The low triplet exciton formation is realized by small triplet exciton formation fraction and rate with high binding energy and high reorganization energy of triplet exciton. Demonstrated in two analogue molecules in conventional donor acceptor molecule structure for bipolar charge injection and transport with nearly the same frontier orbital energy levels and triplet excited energies, the new concept host material shows significantly suppressed triplet exciton formation in the host to avoid quenching effects, leading to much improved device efficiencies and stabilities. The low-voltage driving blue PhOLED devices exhibit maximum efficiencies of 43.7 cd A(-1) for current efficiency, 32.7 lm W-1 for power efficiency, and 20.7% for external quantum efficiency with low roll-off and remarkable relative quenching effect reduction ratio up to 41%. Our fundamental solution for preventing quenching effects of long-lived triplet excitons provides exciting opportunities for fabricating high-performance devices using the advanced host materials with intrinsically small triplet exciton formation cross section.
机译:引入限制三重态激子形成以从根本上减轻涉及三重态的猝灭效应的概念来构建用于高效且稳定的蓝色磷光有机发光二极管(PhOLED)的主体材料。低三重态激子形成是通过三重态激子的形成分数和速率小,三重态激子的结合能高和重组能高而实现的。在传统供体受体分子结构中的两个类似分子中进行了演示,用于双极电荷注入和运输,它们具有几乎相同的前沿轨道能级和三重态激发能,该新概念基质材料显示出显着抑制了基质中三重态激子的形成,从而避免了猝灭作用,大大提高了设备​​的效率和稳定性。低压驱动蓝色PhOLED器件的电流效率最大效率为43.7 cd A(-1),功率效率为32.7 lm W-1,外部量子效率为20.7%,具有低滚降和显着的相对猝灭效应降低比例高达41%。我们为防止长寿命三重态激子的猝灭效应而提供的基本解决方案提供了令人兴奋的机会,可使用具有三重态激子形成截面本质较小的先进基质材料来制造高性能器件。

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