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Dual n-type units including pyridine and diphenylphosphine oxide: effective design strategy of host materials for high-performance organic light-emitting diodes

机译:包括吡啶和二苯基氧化膦在内的双n型单元:高性能有机发光二极管主体材料的有效设计策略

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摘要

By using pyridine and diphenylphosphine oxide (DPPO) as dual n-type units, two novel bipolar hosts, namely (5-(3,5-di(9H-carbazol-9-yl)phenyl)pyridin-3-yl)diphenylphosphine oxide (m-PyPOmCP), and (6-(3,5-di(9H-carbazol-9-yl)phenyl)pyridin-3-yl)diphenylphosphine oxide (p-PyPOmCP) are developed for blue and green phosphorescent organic light-emitting diodes (PhOLEDs). Direct linking of the dual n-type units not only pulls the LUMOs down, but also keeps the HOMO levels shallow, and leads to high triplet energies (2.78–2.86 eV) and small singlet-triplet energy differences (0.23–0.35 eV). Blue and green PhOLEDs are fabricated using FIrpic and Ir(ppy)3 as dopants in the hosts. A low turn-on voltage of 2.6 V is achieved for the green PhOLEDs. The m-PyPOmCP hosted blue PhOLED achieves a high current efficiency of 55.6 cd A–1 (corresponding to a maximum external quantum efficiency of 25.3% and a power efficiency of 43.6 lm W–1). The p-PyPOmCP hosted green PhOLED exhibits an efficiency of 98.2 cd A–1 (28.2% and 102.8 lm W–1). These data are among the best values for blue and green PhOLEDs reported so far. These “dual n-type units” hosts show much better performance than their DPPO-free analogue, clearly proving that the direct linking of DPPO and pyridine as dual n-type units is an effective molecular design strategy for host materials for use in high-performance PhOLEDs.
机译:通过使用吡啶和二苯基氧化膦(DPPO)作为双n型单元,两个新的双极性主体,即(5-(3,5-二(9H-咔唑-9-基)苯基)吡啶-3-基)二苯基氧化膦(m-PyPOmCP)和(6-(3,5-二(9H-咔唑-9-基)苯基)吡啶-3-基)二苯基氧化膦(p-PyPOmCP)被开发用于蓝色和绿色磷光有机光-发光二极管(PhOLED)。双n型单元的直接链接不仅使LUMO下降,而且使HOMO水平保持较浅,并导致高三重态能量(2.78–2.86 eV)和较小的单重态-三重态能量差(0.23–0.35 eV)。使用FIrpic和Ir(ppy)3作为主体中的掺杂剂来制造蓝色和绿色PhOLED。绿色PhOLED的启动电压低至2.6V。 m-PyPOmCP承载的蓝色PhOLED实现了55.6 cd A –1 的高电流效率(对应的最大外部量子效率为25.3%,功率效率为43.6 lm W –1 < / sup>)。 p-PyPOmCP承载的绿色PhOLED的效率为98.2 cd A –1 (28.2%和102.8 lm W -1 )。这些数据是迄今为止报道的蓝色和绿色PhOLED的最佳值之一。这些“双n型单元”宿主表现出比不含DPPO的类似物更好的性能,清楚地证明了DPPO和吡啶作为双n型单元的直接连接是一种用于高分子量宿主材料的有效分子设计策略。性能PhOLED。

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