BODIPY‐Anthracene‐Binaphthyl Compounds Display Aging‐Driven Narrow‐Band Circularly Polarized Luminescence Enhancement with Light‐Activated AIE‐to‐ACQ Transformation

F Fanjie Lin X Xinyue Zhang J Jiayan Zhao S Siao Shi (College of Engineering China Pharmaceutical University Nanjing 211109 China) D Dou Liu (College of Engineering China Pharmaceutical University Nanjing 211109 China) K Ke Wang (Tianjin Medical University Cancer Institute and Hospital Tianjin China) Z Zhongxing Geng F Fengyan Song (State Key Laboratory of Materials Low‐Carbon Recycling Center of Excellence for Environmental Safety and Biological Effects Beijing Key Laboratory For Green Catalysis and Separation Department of Chemistry College of Chemistry and Life Science Beijing University of Technology Beijing China) F Fei Li B Ben Zhong Tang (School of Science and Engineering, Guangdong Basic Research Center of Excellence for Aggregate Science, The Chinese University of Hong Kong (Shenzhen), Longgang, Shenzhen 518172, Guangdong, P. R. China)

Abstract

Abstract The development of circularly polarized luminescence (CPL) materials has garnered considerable interest owing to their promising applications in areas such as 3D displays and information encryption, with most efforts devoted to generating CPL activity and improving the dissymmetry factor ( g lum ). However, the essential requirement of narrow‐band emission for high‐resolution organic optoelectronic applications is often overlooked. Here we employed the anthracene group as strong assembly unit and BODIPY as narrow‐band fluorophore to construct with chiral binaphthyl moiety. The resulting compounds R / S ‐An‐BDP displayed light‐triggered transformation from aggregation‐induced emission (AIE) to aggregation‐caused quenching (ACQ) with CPL signals regulation. Moreover, R / S ‐An‐BDP showed aging‐driven narrow‐band fluorescence with the full width at half maximum (FWHM) of 14 nm and CPL activity with the | g lum | value of 0.048 in the aggregate state, attributed to the combined effect of BODIPY and anthracene unit. These findings highlight a functional group fusion strategy for constructing CPL materials with large g lum values and narrow emission, offering a promising approach towards high‐performance CPL materials.

Article Details

Volume / Issue Vol. 65, Issue 2
Published January 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (10)

F

Fanjie Lin

X

Xinyue Zhang

J

Jiayan Zhao

S

Siao Shi

College of Engineering China Pharmaceutical University Nanjing 211109 China

D

Dou Liu

College of Engineering China Pharmaceutical University Nanjing 211109 China

K

Ke Wang

Tianjin Medical University Cancer Institute and Hospital Tianjin China

Z

Zhongxing Geng

F

Fengyan Song

State Key Laboratory of Materials Low‐Carbon Recycling Center of Excellence for Environmental Safety and Biological Effects Beijing Key Laboratory For Green Catalysis and Separation Department of Chemistry College of Chemistry and Life Science Beijing University of Technology Beijing China

F

Fei Li

B

Ben Zhong Tang

School of Science and Engineering, Guangdong Basic Research Center of Excellence for Aggregate Science, The Chinese University of Hong Kong (Shenzhen), Longgang, Shenzhen 518172, Guangdong, P. R. China