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通过单芳基辅助配体实现高性能天蓝色发光金(III)配合物的合理分子设计及其在溶液可加工和真空沉积有机发光器件中的应用

Rational molecular design for realizing high performance sky-blue-emitting gold(iii) complexes with monoaryl auxiliary ligands and their applications for both solution-processable and vacuum-deposited organic light-emitting devices.

作者信息

Tang Man-Chung, Kwok Wing-Kei, Lai Shiu-Lun, Cheung Wai-Lung, Chan Mei-Yee, Wing-Wah Yam Vivian

机构信息

Department of Chemistry , The University of Hong Kong , Pokfulam Road , Hong Kong , P. R. China . Email:

出版信息

Chem Sci. 2018 Oct 30;10(2):594-605. doi: 10.1039/c8sc03636e. eCollection 2019 Jan 14.

DOI:10.1039/c8sc03636e
PMID:30746101
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6334663/
Abstract

A new class of sky-blue-emitting arylgold(iii) complexes containing tridentate bis-cyclometalating ligands derived from 2,6-diphenylpyridine (C^N^C) has been successfully designed and synthesized. By systematically varying the electron-withdrawing groups from cyano, fluoro, and trifluoromethyl to trifluoromethoxy groups on the phenyl ring of the tridentate C^N^C ligands, the emission maxima of these complexes have been significantly blue-shifted from 492 nm to 466 nm in dichloromethane solution. In addition, the higher excited state distortion with respect to the ground state associated with the multiple fluoro substitutions at the tridentate ligand has been successfully reduced by the employment of trifluoromethyl and trifluoromethoxy groups, as revealed by the Huang-Rhys factor. Taking advantage of their high photoluminescence quantum yields of up to 43% in the solid-state MCP thin-films, high performance solution-processable and vacuum-deposited organic light-emitting devices with external quantum efficiencies of up to 5.3% and 11.3%, respectively, have been realized. This work represents the first demonstration of sky-blue-emitting gold(iii) complexes with an chromaticity coordinate of <0.2.

摘要

一类新型的发出天蓝色光的芳基金(III)配合物已成功设计并合成,该配合物含有源自2,6 - 二苯基吡啶(C^N^C)的三齿双环金属化配体。通过系统地改变三齿C^N^C配体苯环上的吸电子基团,从氰基、氟、三氟甲基到三氟甲氧基,这些配合物在二氯甲烷溶液中的发射最大值已从492 nm显著蓝移至466 nm。此外,如黄 - 里斯因子所示,通过使用三氟甲基和三氟甲氧基,成功降低了与三齿配体上多个氟取代相关的相对于基态的更高激发态畸变。利用它们在固态MCP薄膜中高达43%的高光致发光量子产率,分别实现了外部量子效率高达5.3%和11.3%的高性能溶液可加工和真空沉积有机发光器件。这项工作首次展示了色度坐标小于0.2的发出天蓝色光的金(III)配合物。

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