Design strategies for achieving high triplet energy electron transporting host materials for blue electrophosphorescence

L. Sapochak, A. Padmaperuma, P. Vecchi, Hong Qiao, P. Burrows
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引用次数: 20

Abstract

High efficiency small molecule organic light emitting devices (OLEDs) based on light emission from an electrophosphorescent dopant dispersed in an organic host matrix are well known. Achieving blue phosphorescent OLEDs is particularly challenging because the host triplet energy should ideally be > 2.8 eV to prevent back-transfer of energy from the dopant to the host matrix resulting in loss of efficiency. A design strategy for developing new host materials with high triplet energies by using phosphine oxide (P=O) moieties as points of saturation in order to build sublimable, electron transporting host materials starting from small, wide bandgap molecular building blocks (i.e., biphenyl, phenyl, naphthalene, octafluorobiphenyl, and N-ethylcarbazole) is described. Electrophosphorescent OLEDs using the organic phosphine oxide compounds as host materials for the sky blue organometallic phosphor, iridium(III)bis(4,6-(di-fluorophenyl)-pyridinato-N,C2,) picolinate (FIrpic) give maximum external quantum efficiencies of ~ 8% and maximum luminance power efficiencies up to 25 lm/W.
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实现蓝色电磷光高三重态能量电子输运主体材料的设计策略
基于分散在有机基质中的电磷光掺杂发光的高效小分子有机发光器件(OLEDs)是众所周知的。实现蓝色磷光oled特别具有挑战性,因为理想情况下,主体三重态能量应该是> 2.8 eV,以防止能量从掺杂剂向主体基质的反向转移,从而导致效率损失。本文描述了一种利用氧化膦(P=O)基团作为饱和点来开发具有高三重态能的新宿主材料的设计策略,以便从小的、宽带隙的分子构建块(即联苯、苯基、萘、八氟联苯和n -乙基咔唑)开始构建可崇高的、电子传输的宿主材料。使用有机氧化膦化合物作为天蓝色有机金属荧光粉铱(III)二(4,6-(二氟苯基)吡啶- n,C2,)吡啶酸盐(FIrpic)的主体材料的电磷光oled的最大外部量子效率为~ 8%,最大发光功率效率高达25 lm/W。
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