Twisted Phosphors that Violate Kasha's Exciton Model in Organic Systems

Author:

Fu Boyi12,Wang Guangming2,Li Jiuyang2,Li Junbo2,Li Xun2,Zhao Xiaoya2,Ding Shuhui2,Yan Guoping1,Yan Qianqian2,Zhang Kaka2

Affiliation:

1. School of Materials Science and Engineering, Wuhan Institute of Technology Wuhan Hubei 430205 China

2. Key Laboratory of Synthetic and Self‐Assembly Chemistry for Organic Functional Molecules, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences 345 Lingling Road Shanghai 200032 China

Abstract

Comprehensive SummaryKasha's exciton model proposes that T1 energy levels of organic compounds are insensitive to molecular aggregation and microenvironment change because of negligible small transition dipole moments of T1 states. This model holds true in most organic systems till now. Here we report the fabrication of twisted organic phosphors with intramolecular charge transfer characters and flexible molecular structures. When doped into different organic matrices, the twisted phosphor adopts different conformation, exhibits distinct phosphorescence colors and T1 energy levels, which violates Kasha's exciton model in organic system. Given that the change of phosphorescence colors and maxima can be readily distinguished by human eyes and conventional instrument, the twisted phosphors would be exploited as a new type of molecular probe, which would exhibit potential application in optical sensing and stimuli‐responsive systems.

Publisher

Wiley

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