直接的
化学
光化学
单重态
发光
分子内力
表征(材料科学)
激进的
三重态
化学物理
电荷(物理)
单重态裂变
电子结构
自旋态
光致发光
自旋(空气动力学)
单线态氧
光发射
作者
Ryota Matsuoka,Yusuke Yoneda,Hikaru Kuramochi,Tomoaki Miura,Tadaaki Ikoma,Masaki Saigo,Takumi Ehara,KIYOSHI MIYATA,K Onda,Tetsuro Kusamoto
摘要
Luminescent organic radicals often exhibit a red-shifted, broad, and structureless emission band when assembled in a host matrix. This emission has been attributed to pairs of neighboring photoexcited and ground-state radicals forming an excimer. However, the electronic character of this "excimer-like" (EX) state has not been definitively clarified through experiments. Here we present an experimental characterization of this EX state using a spatially confined luminescent diradical as a model for radical dimers. Comprehensive spectroscopic investigations revealed that the EX state of the diradical is a zwitterionic (ZI) state with a closed-shell singlet electronic configuration generated by intramolecular symmetry-breaking radical-to-radical charge transfer. In combination with previous magnetoluminescence studies, we experimentally show that the formation of the ZI state is specific to the singlet spin state. Our results enable a detailed understanding of the photophysics and photochemistry of radical multichromophoric systems for future spin photonics applications.
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