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基于氰基吡啶的双极主体材料用于绿色电磷光,具有极低的开启电压和高光功率效率。

Cyanopyridine Based Bipolar Host Materials for Green Electrophosphorescence with Extremely Low Turn-On Voltages and High Power Efficiencies.

机构信息

State Key Laboratory of Fine Chemicals, College of Chemical Engineering, Dalian University of Technology , 2 Linggong Road, Dalian 116024, China.

出版信息

ACS Appl Mater Interfaces. 2016 Aug 24;8(33):21497-504. doi: 10.1021/acsami.6b04395. Epub 2016 Aug 9.

Abstract

Low driving voltage and high power efficiency are basic requirements when practical applications of organic light emitting diodes (OLEDs) in displays and lighting are considered. Two novel host materials m-PyCNmCP and 3-PyCNmCP incorporating cyanopyridine moiety as electron-transporting unit are developed for use in fac-tris(2-phenylpyridine)iridium(III) (Ir(ppy)3) based green phosphorescent OLEDs (PhOLEDs). Extremely low turn-on voltages of 2.01 and 2.27 V are realized, which are even lower than the theoretical limit of the emitted photon energy (hv)/electron charge (e) (2.37 V) of Ir(ppy)3. High power efficiency of 101.4 lm/W (corresponding to a maximum external quantum efficiency of 18.4%) and 119.3 lm/W (24.7%) are achieved for m-PyCNmCP and 3-PyCNmCP based green PhOLEDs. The excellent EL performance benefits from the ideal parameters of host materials by combining cyano and pyridine to enhance the n-type feature. The energetic favorable alignment of HOMO/LUMO levels of hosts with adjacent layers and the dopant for easy charge injections and direct charge trapping by dopant, their bipolar feature to balance charge transportations, sufficiently high triplet energy and small singlet/triplet energy difference (0.38 and 0.43 eV) combine to be responsible for the extremely low driving voltages and high power efficiencies of the green PhOLEDs.

摘要

在考虑将有机发光二极管(OLED)实际应用于显示器和照明时,低驱动电压和高功率效率是基本要求。本文设计了两种新型主体材料 m-PyCNmCP 和 3-PyCNmCP,它们都包含氰基吡啶部分作为电子传输单元,用于基于 fac-三(2-苯基吡啶)铱(III)(Ir(ppy)3)的绿色磷光 OLED(PhOLED)。实现了极低的开启电压 2.01V 和 2.27V,甚至低于 Ir(ppy)3 的发射光子能量(hv)/电子电荷(e)(2.37V)的理论极限。基于 m-PyCNmCP 和 3-PyCNmCP 的绿色 PhOLED 的功率效率分别高达 101.4lm/W(对应最大外量子效率为 18.4%)和 119.3lm/W(24.7%)。优异的 EL 性能得益于主体材料理想的参数,通过将氰基和吡啶结合起来增强 n 型特性。主体材料的 HOMO/LUMO 能级与相邻层的能级以及掺杂剂的能量有利排列,易于电荷注入和掺杂剂的直接电荷俘获,其双极性特征平衡电荷输运,充分高的三重态能量和小的单重态/三重态能量差(0.38 和 0.43eV)结合在一起,使得绿色 PhOLED 具有极低的驱动电压和高的功率效率。

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