Confining isolated chromophores for highly efficient blue phosphorescence

Wenpeng Ye, Huili Ma, Huifang Shi, He Wang, Anqi Lv, Lifang Bian, Meng Zhang, Chaoqun Ma, Kun Ling, Mingxing Gu, Yufeng Mao, Xiaokang Yao, Chaofeng Gao, Kang Shen, Wenyong Jia, Jiahuan Zhi, Suzhi Cai, Zhicheng Song, Jingjie Li, Yanyun ZhangSong Lu, Kun Liu, Chaomin Dong, Qian Wang, Yudong Zhou, Wei Yao, Yujian Zhang, Hongmei Zhang, Zaiyong Zhang, Xiaochun Hang, Zhongfu An, Xiaogang Liu, Wei Huang

科研成果: 期刊稿件文章同行评审

374 引用 (Scopus)

摘要

High-efficiency blue phosphorescence emission is essential for organic optoelectronic applications. However, synthesizing heavy-atom-free organic systems having high triplet energy levels and suppressed non-radiative transitions—key requirements for efficient blue phosphorescence—has proved difficult. Here we demonstrate a simple chemical strategy for achieving high-performance blue phosphors, based on confining isolated chromophores in ionic crystals. Formation of high-density ionic bonds between the cations of ionic crystals and the carboxylic acid groups of the chromophores leads to a segregated molecular arrangement with negligible inter-chromophore interactions. We show that tunable phosphorescence from blue to deep blue with a maximum phosphorescence efficiency of 96.5% can be achieved by varying the charged chromophores and their counterions. Moreover, these phosphorescent materials enable rapid, high-throughput data encryption, fingerprint identification and afterglow display. This work will facilitate the design of high-efficiency blue organic phosphors and extend the domain of organic phosphorescence to new applications.

源语言英语
页(从-至)1539-1544
页数6
期刊Nature Materials
20
11
DOI
出版状态已出版 - 11月 2021

指纹

探究 'Confining isolated chromophores for highly efficient blue phosphorescence' 的科研主题。它们共同构成独一无二的指纹。

引用此