Clustering‐Triggered Emission Liquid Crystalline Polymer Bearing Cholesterol: Tunable Circularly Polarized Luminescence and Room‐Temperature Phosphorescence

Author:

Zhou Mengdie1,Zhang Jiafan1,Chen Yueyue1,Chen Zhong2,Yuan Yongjie1,Gong Yongyang3,Zhang Hailiang1ORCID

Affiliation:

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

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

3. Guangxi Key Laboratory of Optical and Electronic Materials and Devices College of Materials Science and Engineering,Guilin University of Technology No.12 Jian’gan Rd., Qixing District Guilin 541004 China

Abstract

AbstractCircularly polarized luminescence (CPL) materials with clustering‐triggered emission (CTE) characteristic have gradually attracted attention for their unique photophysical properties. However, the majority of reported clusteroluminogens lack chirality and exhibit heterogeneity, making it challenging to achieve a well‐defined helical structure necessary for efficient CPL with high dissymmetry factor (glum). In this paper, chiral liquid crystals are constructed to obtain CTE‐based CPL materials with high glum values. Side chain liquid crystal polymer PM6Chol bearing cholesterol clusteroluminogens are designed and synthesized. PM6Chol‐coated film and PM6Chol thermal‐treated film are also successfully prepared by different film‐forming methods. Both the films inherit the CTE characteristic of cholesterol and show excitation wavelength‐dependent luminescent behavior. However, the two polymer films exhibit different liquid crystal phase structures, with PM6Chol‐coated film being a chiral bilayer smectic C phase and PM6Chol thermal‐treated film being an achiral bilayer smectic A phase. Attributed to helical arrangement of cholesterol, PM6Chol‐coated film emits efficient CPL with glum values up to 1.0 × 10−1. For PM6Chol thermal‐treated film, no CPL signal is detected due to the absence of helical structure. However, it shows obvious room‐temperature phosphorescence with 2.0 s afterglow and 23.9 ms lifetime.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry

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