余辉
磷光
发光
荧光粉
材料科学
兴奋剂
聚合物
持续发光
光电子学
荧光
纳米技术
光化学
化学
光学
热释光
复合材料
物理
伽马射线暴
天文
作者
Longming Jin,Ziyi Wang,Wanqi Mo,Huangjun Deng,Wei Hong,Zhenguo Chi
标识
DOI:10.1002/ange.202410974
摘要
The development of polymer‐based persistent luminescence materials with color‐tunable organic afterglow and multiple responses is highly desirable for the applications in anti‐counterfeiting, flexible displays and data‐storage. However, achieving efficient persistent luminescence from a single‐phosphor system with multiple responses remains a challenging task. Herein, a hierarchical dual‐mode emission system is developed by doping 9H‐pyrido[3,4‐b]indole (PI2) into an amorphous polyacrylamide matrix, which exhibits color‐tunable afterglow due to excitation‐, temperature‐ and humidity‐dependence. Notably, the coexistence of isolated state and J‐aggregate state of the guest molecule not only provides excitation‐dependent afterglow color, but also leads to hierarchical temperature‐dependent afterglow color resulting from different thermally activated delayed fluorescence (TADF) and ultralong organic phosphorescence (UOP) behaviors of the isolated and aggregated states. The complex responsiveness based on the hierarchical dual‐mode emission can serve for security features through inkjet printing and ink‐writing. These findings may provide further insight into the regulated persistent luminescence by isolated and aggregated phosphors in doped polymer systems and expand the scope of stimuli‐responsive organic afterglow materials for broader applications.
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