H‑Type-like Aggregation-Accelerated Singlet Fission Process in Dipyrrolonaphthyridinedione Thin Film: The Role of Charge Transfer/Excimer Mixed Intermediate State

Through the combination of transient spectroscopy and theoretical simulations, an accelerated singlet fission (SF) process was evidently observed in the strongly coupled H-type-like aggregation thin films of a dipyrrolonaphthyridinedione skeleton. Results elucidate that in this H-type-like aggregati...

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Veröffentlicht in:The journal of physical chemistry letters 2021-12, Vol.12 (51), p.12276-12282
Hauptverfasser: Wang, Long, Cai, Wanlin, Sun, Jing, Wu, Yuling, Zhang, Bin, Tian, Xiangbin, Guo, Shaoting, Liang, WanZhen, Fu, Hongbing, Yao, Jiannian
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Sprache:eng
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Zusammenfassung:Through the combination of transient spectroscopy and theoretical simulations, an accelerated singlet fission (SF) process was evidently observed in the strongly coupled H-type-like aggregation thin films of a dipyrrolonaphthyridinedione skeleton. Results elucidate that in this H-type-like aggregation, the substantially stabilized charge transfer (CT) state is close in energy with singlet and excimer states, resulting in a CT/excimer mixed state, which could drive excited-state population escaping from excimer trap and promote an ultrafast and highly efficient SF process. Our results not only enrich the limited capacity of SF materials but also contribute to an in-depth understanding of SF dynamics in H-type aggregation, which is of fundamental importance for designing new SF sensitizers and implementing practical SF applications.
ISSN:1948-7185
1948-7185
DOI:10.1021/acs.jpclett.1c03265