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用于高效深红光有机发光器件的杂化磷光配合物的合理设计与特性研究。

Rational Design and Characterization of Heteroleptic Phosphorescent Complexes for Highly Efficient Deep-Red Organic Light-Emitting Devices.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, Institute of Theoretical Chemistry, Jilin University , Changchun, 130012, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Apr 5;9(13):11749-11758. doi: 10.1021/acsami.7b00348. Epub 2017 Mar 27.

Abstract

Two new deep-red iridium(III) complexes, (fpiq)Ir(dipba) (fIr1) and (fpiq)Ir(dipba) (dfIr2), comprising two cyclometaling ligands of fluorophenyl-isoquinoline derivatives (fpiq and fpiq) and a N-heterocyclic carbene (NHC)-based ancillary ligand of N,N'-diisopropylbenzamidinate (dipba) are designed, synthesized, and characterized. Given the unique four-membered Ir-N-C-N backbone built by the metal center and the ancillary ligand, both phosphors achieve significant improvement for their comprehensive optoelectronic characteristics. Density function theory (DFT) calculations and electrochemical measurements support the genuine pure red phosphorescent emission of fIr1 and dfIr2 based on their clearly distinct electron density distributions of the HOMO/LUMO orbitals compared with other red-emitting Ir(III) derivatives. Both new phosphors show deep-red emission with λ values in the region of 650-660 nm with high PLQYs and short excited-state lifetimes. The phosphorescent organic light emitting diodes (PhOLEDs) based on fIr1 and dfIr2 realize deep-red EL with the stable CIE coordinates of (0.70, 0.30) and (0.69, 0.31), the peak EQE/PE values of 15.4%/9.3 lm W and 16.7%/10.4 lm W, respectively, which maintain such high levels as 10.6%/3.5 lm W and 10.8%/3.6 lm W at the practical luminance of 1000 cd m. They are the highest EL values reported for the OLEDs with such deep-red CIE coordinates.

摘要

设计、合成并表征了两个新的深红光铱(III)配合物,(fpiq)Ir(dipba) (fIr1)和(fpiq)Ir(dipba) (dfIr2),它们包含两个氟苯基-异喹啉衍生物(fpiq 和 fpiq)的环金属配体和一个基于 N,N'-二异丙基苯甲脒(dipba)的 N-杂环卡宾(NHC)辅助配体。考虑到金属中心和辅助配体构建的独特的四元 Ir-N-C-N 骨架,两种磷光体都显著改善了它们的综合光电特性。密度泛函理论(DFT)计算和电化学测量支持 fIr1 和 dfIr2 的纯红光磷光发射,因为它们的 HOMO/LUMO 轨道的电子密度分布与其他红光发射的 Ir(III)衍生物明显不同。两种新的磷光体都显示出深红光发射,λ 值在 650-660nm 范围内,具有较高的 PLQY 和短的激发态寿命。基于 fIr1 和 dfIr2 的磷光有机发光二极管(PhOLED)实现了深红光 EL,具有稳定的 CIE 坐标(0.70, 0.30)和(0.69, 0.31),峰值 EQE/PE 值分别为 15.4%/9.3 lm W 和 16.7%/10.4 lm W,在 1000 cd m 的实际亮度下仍保持 10.6%/3.5 lm W 和 10.8%/3.6 lm W 的高水平。它们是此类深红光 CIE 坐标的 OLED 报道的最高 EL 值。

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