磷光
光化学
荧光
化学
系统间交叉
激发态
单重态
光电开关
持续发光
三重态
荧光粉
发光
费斯特共振能量转移
生命科学中的荧光
二苯并呋喃
材料科学
分子
光电子学
有机化学
光学
物理
热释光
核物理学
作者
Xuanhang Wang,Guocui Pan,Haoxuan Ren,Jiashu Li,Bin Xu,Wenjing Tian
标识
DOI:10.1002/ange.202114264
摘要
Abstract Regulation of fluorescence–phosphorescence pathways in organic molecular aggregate remains a challenge due to the complicated singlet–triplet excited state dynamics process. Herein, we demonstrated a successful example (o‐BFT) to realize photoreversible fluorescence and room temperature phosphorescence (RTP) switching based on an effective strategy of integrating a phosphor (dibenzofuran) with a photoswitch (dithienylbenzothiophene). o‐BFT exhibited dual emission of fluorescence and RTP in both powder and doping polymer film. Notably, the long‐lived RTP of o‐BFT could be repeatedly erased and restored through reversible photocyclization and decyclization under alternate ultraviolet and visible photoirradiation. In‐depth theoretical and spectroscopic investigations revealed that the triplet inactivation was dominated by a photo‐controlled triplet‐to‐singlet Förster resonance energy transfer from light‐activated o‐BFT to photoisomer c‐BFT. Yet, the initial fluorescence could be preserved in this process to afford a photoreversible fluorescence‐RTP switching.
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