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- W4243968926 endingPage "17284" @default.
- W4243968926 startingPage "17275" @default.
- W4243968926 abstract "Abstract We report a highly efficient dopant‐matrix afterglow system enabled by TADF mechanism to realize afterglow quantum yields of 60–70 %, which features a moderate rate constant for reverse intersystem crossing ( k RISC ) to simultaneously improve afterglow quantum yields and maintain afterglow emission lifetime. Difluoroboron β‐diketonate (BF 2 bdk) compounds are designed with multiple electron‐donating groups to possess moderate k RISC values and are selected as luminescent dopants. The matrices with carbonyl functional groups such as phenyl benzoate (PhB) have been found to interact with and perturb BF 2 bdk excited states by dipole–dipole interactions and thus enhance the intersystem crossing of BF 2 bdk excited states. Through dopant‐matrix collaboration, the efficient TADF‐type afterglow materials have been achieved to exhibit excellent processability into desired shapes and large‐area films by melt casting, as well as aqueous afterglow dispersions for potential bioimaging applications." @default.
- W4243968926 created "2022-05-12" @default.
- W4243968926 creator A5012250274 @default.
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- W4243968926 creator A5024433530 @default.
- W4243968926 creator A5056916011 @default.
- W4243968926 creator A5089521834 @default.
- W4243968926 date "2021-06-27" @default.
- W4243968926 modified "2023-10-10" @default.
- W4243968926 title "TADF‐Type Organic Afterglow" @default.
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