| Literature DB >> 34704444 |
Long Gu1,2, Wenpeng Ye3, Xiao Liang4, Anqi Lv3, Huili Ma3, Manjeet Singh3, Wenyong Jia3, Zhaocun Shen2, Yi Guo2, Yaru Gao5, Hongzhong Chen2, Dongdong Wang2, Yinglong Wu2, Jiawei Liu2, Hou Wang2, You-Xuan Zheng4, Zhongfu An3, Wei Huang1,3, Yanli Zhao2.
Abstract
Organic optoelectronic functional materials featuring circularly polarized emission and persistent luminescence represent a novel research frontier and show promising applications in data encryption, displays, biological imaging, and so on. Herein, we present a simple and universal approach to achieve circularly polarized organic phosphorescence (CPP) from amorphous copolymers by the incorporation of axial chiral chromophores into polymer chains via radical cross-linked polymerization. Our experimental data reveal that copolymers (R/S)-PBNA exhibit a maximum CPP efficiency of 30.6% and the largest dissymmetric factor of 9.4 × 10-3 and copolymers (R/S)-PNA show the longest lifetime of 0.68 s under ambient conditions. Given the CPP property of these copolymers, their potential applications in multiple information encryption and displays are demonstrated, respectively. These findings not only lay the foundation for the development of amorphous polymers with superior CPP but also expand the outlook of room-temperature phosphorescent materials.Entities:
Year: 2021 PMID: 34704444 DOI: 10.1021/jacs.1c08118
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419