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激子解离与复合通过高效荧光共振能量转移实现窄带有机余辉。

Exciton Dissociation and Recombination Afford Narrowband Organic Afterglow Through Efficient FRET.

作者信息

Zhang Jingyu, Wang Wuji, Bian Yanfang, Wang Yike, Lu Xinchi, Guo Zhenli, Sun Chengxi, Li Zecai, Zhang Xiao, Yuan Jie, Tao Ye, Huang Wei, Chen Runfeng

机构信息

State Key Laboratory for Organic Electronics and Information Displays & Institute of Advanced Materials (IAM), Nanjing University of Posts and Telecommunications, 9 Wenyuan Road, Nanjing, 210023, China.

Nanjing Vocational University of Industry Technology, 1 Yangshan North Road, Nanjing, 210023, China.

出版信息

Adv Mater. 2024 Oct;36(41):e2404769. doi: 10.1002/adma.202404769. Epub 2024 Aug 12.

Abstract

Organic afterglow with long-persistent luminescence (LPL) after photoexcitation is highly attractive, but the realization of narrowband afterglow with small full-width at half-maximum (FWHM) is a huge challenge since it is intrinsically contradictory to the triplet- and solid-state emission nature of organic afterglow. Here, narrow-band, long-lived, and full-color organic LPL is realized by isolating multi-resonant thermally activated delayed fluorescent (MR-TADF) fluorophores in a glassy steroid-type host through a facile melt-cooling treatment. Such prepared host becomes capable of exciton dissociation and recombination (EDR) upon photoirradiation for both long-lived fluorescence and phosphorescence; and, the efficient Förster resonance energy transfer (FRET) from the host to various MR-TADF emitters leads to high-performance LPL, exhibiting small FWHM of 33 nm, long persistent time over 10 s, and facile color-tuning in a wide range from deep-blue to orange (414-600 nm). Moreover, with the extraordinary narrowband LPL and easy processability of the material, centimeter-scale flexible optical waveguide fibers and integrated FWHM/color/lifetime-resolved multilevel encryption/decryption devices have been designed and fabricated. This novel EDR and singlet/triplet-to-singlet FRET strategy to achieve excellent LPL performances illustrates a promising way for constructing flexible organic afterglow with easy preparation methods, shedding valuable scientific insights into the design of narrow-band emission in organic afterglow.

摘要

光激发后具有长余辉发光(LPL)的有机余辉极具吸引力,但是实现半高宽(FWHM)小的窄带余辉是一个巨大的挑战,因为这与有机余辉的三重态和固态发射本质存在内在矛盾。在此,通过简便的熔融冷却处理,将多共振热活化延迟荧光(MR-TADF)荧光团隔离在玻璃态甾体类主体中,实现了窄带、长寿命和全色的有机LPL。如此制备的主体在光照射时能够实现激子解离和复合(EDR),产生长寿命荧光和磷光;并且,从主体到各种MR-TADF发射体的高效福斯特共振能量转移(FRET)导致了高性能的LPL,其半高宽小至33nm,持续时间长达10s以上,并且能够在从深蓝到橙色(414 - 600nm)的宽范围内轻松进行颜色调节。此外,凭借材料非凡的窄带LPL和易于加工的特性,设计并制造了厘米级柔性光波导纤维以及集成了半高宽/颜色/寿命分辨的多级加密/解密装置。这种实现优异LPL性能的新型EDR和单重态/三重态到单重态FRET策略,为通过简便制备方法构建柔性有机余辉指明了一条有前景的道路,为有机余辉中窄带发射的设计提供了宝贵的科学见解。

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