单重态裂变
单重态
激子
发色团
化学
准分子
三重态
比克西顿
光致发光
化学物理
分子物理学
光化学
原子物理学
荧光
物理
激发态
凝聚态物理
光电子学
分子
光学
有机化学
作者
Jiale Feng,Parisa Hosseinabadi,Damon M. de Clercq,Ben P. Carwithen,Michael P. Nielsen,Matthew W. Brett,Shyamal K. K. Prasad,Adam A. D. Farahani,Hsiu L. Li,Samuel N. Sanders,Jonathon E. Beves,Nicholas J. Ekins‐Daukes,Jared H. Cole,Pall Thordarson,David M. Huang,Murad J. Y. Tayebjee,Timothy W. Schmidt
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2024-07-25
卷期号:16 (11): 1861-1867
被引量:11
标识
DOI:10.1038/s41557-024-01591-0
摘要
The photophysical processes of singlet fission and triplet fusion have numerous emerging applications. They involve the separation of a photo-generated singlet exciton into two dark triplet excitons and the fusion of two dark triplet excitons into an emissive singlet exciton, respectively. The role of the excimer state and the nature of the triplet-pair state in these processes have been a matter of contention. Here we analyse the room temperature time-resolved emission of a neat liquid singlet fission chromophore and show that it exhibits three spectral components: two that correspond to the bright singlet and excimer states and a third component that becomes more prominent during triplet fusion. This spectrum is enhanced by magnetic fields, confirming its origins in the recombination of weakly coupled triplet pairs. It is thus attributed to a strongly coupled triplet pair state. These observations unite the view that there is an emissive intermediate in singlet fission and triplet fusion, distinct from the broad, unstructured excimer emission.
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