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含异构噻吩并吡啶和噻吩并喹啉部分的黄至红色发光金(III)配合物的设计与合成及其在操作稳定的有机发光器件中的应用

Design and synthesis of yellow- to red-emitting gold(III) complexes containing isomeric thienopyridine and thienoquinoline moieties and their applications in operationally stable organic light-emitting devices.

作者信息

Li Lok-Kwan, Au-Yeung Cathay Chai, Tang Man-Chung, Lai Shiu-Lun, Cheung Wai-Lung, Ng Maggie, Chan Mei-Yee, Yam Vivian Wing-Wah

机构信息

Institute of Molecular Functional Materials and Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong.

出版信息

Mater Horiz. 2022 Jan 4;9(1):281-293. doi: 10.1039/d1mh00821h.

DOI:10.1039/d1mh00821h
PMID:34473166
Abstract

A new class of yellow- to red-emitting carbazolylgold(III) complexes containing isomeric thienopyridine or thienoquinoline moieties in the cyclometalating ligand has been designed and synthesized, which showed high photoluminescence quantum yields of over 80% in solid-state thin films. The isomeric effect and extended π-conjugation of the -heterocycles have been found to remarkably perturb the photophysical, electrochemical and electroluminescence properties of the gold(III) complexes. In particular, the operational lifetimes of organic light-emitting devices based on that incorporated with thieno[2,3-]pyridine are almost three orders of magnitude longer than that incorporated with thieno[3,2-]pyridine. This has led to long device operational stability with a LT value of up to 63 200 h at a luminance of 100 cd m and a long half-lifetime of 206 800 h, as well as maximum external quantum efficiencies of up to 8.6% and 14.5% in the solution-processed and vacuum-deposited devices, respectively. This work provides insights into the development of robust and highly luminescent gold(III) complexes and the identification of stable molecular motifs for designing efficient emitters.

摘要

设计并合成了一类新型的含咔唑基金(III)配合物,其环金属化配体中含有异构的噻吩并吡啶或噻吩并喹啉部分,在固态薄膜中显示出超过80%的高光致发光量子产率。已发现-杂环的异构效应和扩展的π共轭显著影响金(III)配合物的光物理、电化学和电致发光性质。特别是,基于噻吩并[2,3-]吡啶的有机发光器件的工作寿命比基于噻吩并[3,2-]吡啶的器件长近三个数量级。这导致了器件的长期运行稳定性,在100 cd m的亮度下LT值高达63200 h,半衰期长达206800 h,以及溶液处理和真空沉积器件的最大外量子效率分别高达8.6%和14.5%。这项工作为开发稳健且高发光的金(III)配合物以及识别用于设计高效发光体的稳定分子基序提供了见解。

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