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Updated: Jun 23, 2026

Time-resolved Photophysical Characterization of Triplet-harvesting Organic Compounds at an Oxygen-free Environment Using an iCCD Camera
Published on: December 27, 2018
Host-guest doping strategy for achieving ultralong multicolor room-temperature phosphorescence in
Yuehuan Lai1, Zhixi Su1, Huakai Qiu1
1College of Chemistry, Chemical Engineering and Environment, Fujian Provincial Key Laboratory of Modern Analytical Science and Separation Technology, Minnan Normal University, Zhangzhou 363000, China.
None:
Organic room-temperature phosphorescent materials, owing to their advantages such as large Stokes shifts and long-lived delayed emission, have significant potential for applications in areas such as luminescent displays and information encryption. Currently, host-guest doping remains the mainstream strategy for achieving room-temperature phosphorescence; however, issues such as complex preparation methods and limited emission color range still need to be addressed. In this work, a simple one-step in situ molten host-guest doping strategy is employed to embed polycyclic aromatic hydrocarbon derivatives into a benzophenone matrix. The rigid microenvironment formed upon cooling and crystallization effectively suppresses the non-radiative decay of guest molecules. Additionally, through the modulation of the conjugated structure and substituents of the guest molecules, a controllable tuning of the emission color ranging from cyan to red is achieved. Notably, the composite material PC3A/BPO exhibits a red ultralong afterglow with a lifetime of 231 ms upon 365 nm excitation. Theoretical calculations clearly reveal the intermolecular charge transfer (CT) process within the host-guest system, which lowers the excitation state energy level and enhances spin-orbit coupling, thereby enabling stable and efficient RTP emission. Finally, the obtained host-guest composite materials are successfully applied in multi-level anti-counterfeiting encryption, demonstrating their potential for applications in information security.
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