Intense Left‐handed Circularly Polarized Luminescence in Chiral Nematic Hydroxypropyl Cellulose Composite Films

Author:

Huang Yuxiao1,Qian Yi1,Chang Yongxin2,Yu Jiaqi1,Li Qiongya2,Tang Mingliang3,Yang Xindi2,Liu Zhepai1,Li Hui1,Zhu Zece1ORCID,Li Wei1,Zhang Fusheng12ORCID,Qing Guangyan12ORCID

Affiliation:

1. Hubei Key Laboratory of Biomass Fibers and Eco‐dyeing and Finishing College of Chemistry and Chemical Engineering Wuhan Textile University Wuhan 430200 P. R. China

2. CAS Key Laboratory of Separation Science for Analytical Chemistry Dalian Institute of Chemical Physics Chinese Academy of Sciences Dalian 116023 P. R. China

3. College of Life Sciences Wuhan University Wuhan 430072 P. R. China

Abstract

AbstractIntegrating optically active components into chiral photonic cellulose to fabricate circularly polarized luminescent materials has transformative potential in disease detection, asymmetric reactions, and anticounterfeiting techniques. However, the lack of cellulose‐based left‐handed circularly polarized light (L‐CPL) emissions hampers the progress of these chiral functionalizations. Here, this work proposes an unprecedented strategy: incorporating a chiral nematic organization of hydroxypropyl cellulose with robust aggregation‐induced emission luminogens to generate intense L‐CPL emission. By utilizing N,N‐dimethylformamide as a good solvent for fluorescent components and cellulose matrices, this work produces a right‐handed chiral nematic structure film with a uniform appearance in reflective and fluorescent states. Remarkably, this system integrates a high asymmetric factor (0.51) and an impressive emission quantum yield (55.8%) into one fascinating composite. More meaningfully, this approach is versatile, allowing for the incorporation of luminogen derivatives emitting multicolored L‐CPL. These chiral fluorescent films possess exceptional mechanical flexibility (toughness up to 0.9 MJ m−3) and structural stability even under harsh environmental exposures, making them promising for the fabrication of various products. Additionally, these films can be cast on the fabrics to reveal multilevel and durable anticounterfeiting capabilities or used as a chiral light source to induce enantioselective photopolymerization, thereby offering significant potential for diverse practical applications.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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