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Design of highly efficient deep-blue organic afterglow through guest sensitization and matrices rigidification

Engineering and Technology

Design of highly efficient deep-blue organic afterglow through guest sensitization and matrices rigidification

S. Xu, W. Wang, et al.

Discover groundbreaking advancements in deep-blue organic afterglow materials developed by researchers Shen Xu, Wu Wang, Hui Li, Jingyu Zhang, Runfeng Chen, Shuang Wang, Chao Zheng, Guichuan Xing, Chunyuan Song, and Wei Huang. Their innovative water-responsive technology creates highly luminescent patterns suitable for anti-counterfeiting, lasting over a month with the ability to be effortlessly rewritten. Don't miss out on the future of organic optoelectronics!

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Playback language: English
Abstract
Blue/deep-blue emission is crucial for organic optoelectronics but remains a formidable challenge in organic afterglow due to the difficulties in populating and stabilizing the high-energy triplet excited states. Here, a facile strategy to realize the efficient deep-blue organic afterglow is proposed via host molecules to sensitize the triplet exciton population of guest and water implement to suppress the non-radiative decays by matrices rigidification. A series of highly luminescent deep-blue (405–428 nm) organic afterglow materials with lifetimes up to 1.67 s and quantum yields of 46.1% are developed. With these high-performance water-responsive materials, lifetime-encrypted rewritable paper has been constructed for water-jet printing of high-resolution anti-counterfeiting patterns that can retain for a long time (>1 month) and be erased by dimethyl sulfoxide vapor in 15 min with high reversibility for many write/erase cycles. These results provide a foundation for the design of high-efficient blue/deep-blue organic afterglow and stimuli-responsive materials with remarkable applications.
Publisher
Nature Communications
Published On
Oct 27, 2020
Authors
Shen Xu, Wu Wang, Hui Li, Jingyu Zhang, Runfeng Chen, Shuang Wang, Chao Zheng, Guichuan Xing, Chunyuan Song, Wei Huang
Tags
organic optoelectronics
deep-blue emission
afterglow materials
anti-counterfeiting
quantum yield
water-responsive
rewritable paper
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