Multicolor‐Tunable and Time‐Dependent Circularly Polarized Room‐Temperature Phosphorescence from Liquid Crystal Copolymers

Author:

Gong Wei1,Zhou Mengdie1,Xiao Lingyu2,Fan Chunyan1,Yuan Yongjie1,Gong Yongyang3,Zhang Hailiang1ORCID

Affiliation:

1. Key Laboratory of Polymeric Materials and Application Technology of Hunan Province Key Laboratory of Advanced Functional Polymer Materials of Colleges and Universities of Hunan Province College of Chemistry Xiangtan University Xiangtan Hunan 411105 China

2. Instrumentation and Service Center for Molecular Sciences Westlake University 18 Shilongshan Road Hangzhou Zhejiang 310024 China

3. Key Laboratory of New Processing Technology for Non‐ferrous Metals and Materials Ministry of Education, Key Laboratory of New Energy and Building Energy Saving College of Materials Science and Engineering Guilin University of Technology Guilin Guangxi 541004 China

Abstract

AbstractCircularly polarized luminescent (CPL) materials have significant promising applications in organic light‐emitting diodes, asymmetric synthesis, and other fields. However, due to the instability of triplet‐state excitons, how to achieve an effective combination of CPL with room‐temperature phosphorescence (RTP) remains a formidable challenge. Here, a simple and feasible method for constructing polymer‐based CPRTP materials is proposed by preparing chiral phosphorescent liquid crystals through copolymerization. A series of RTP chiral liquid crystal copolymers are successfully synthesized by copolymerizing phosphorescent monomer bearing chiral cholesterol mesogen with phosphorescent monomer bearing dibenzofuran chromophore. Due to the introduction of chiral cholesterol mesogen, copolymers can form chiral smectic C‐phase liquid crystals. Utilizing their selective reflection characteristic, efficient CPRTP is achieved, with a glum value of up to −1.6 × 10−2. In addition, both components in copolymers exhibit RTP properties and show significant differences in phosphorescence color and lifetime. By changing the composition of copolymers, the regulation of their phosphorescence properties is successfully achieved. As a result, multicolor‐tunable and time‐dependent CPRTP materials are successfully prepared.

Funder

Natural Science Foundation of Hunan Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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