Singlet Fission in Lycopene H‑Aggregates

A theory of singlet fission (SF) in carotenoid dimers is applied to explain the SF in lycopene H-aggregates observed after high-energy photoexcitation. The explanation proposed here is that a high energy, delocalized bright 1 B u + state first relaxes and localizes onto a single lycopene monomer. Th...

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Veröffentlicht in:The journal of physical chemistry letters 2023-11, Vol.14 (44), p.9842-9847
1. Verfasser: Barford, William
Format: Artikel
Sprache:eng
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Zusammenfassung:A theory of singlet fission (SF) in carotenoid dimers is applied to explain the SF in lycopene H-aggregates observed after high-energy photoexcitation. The explanation proposed here is that a high energy, delocalized bright 1 B u + state first relaxes and localizes onto a single lycopene monomer. The high-energy intramonomer state then undergoes internal conversion to the 11 B u – state. Once populated, the 11 B u – state allows exothermic bimolecular singlet fission, while its internal conversion to the 21 A g – state is symmetry forbidden. The simulation of SF predicts that the intramonomer triplet-pair state undergoes almost complete population transfer to the intermonomer singlet-pair state within 100 ps. Simultaneously, ZFS interactions begin to partially populate the intermonomer quintet triplet-pair state up to ca. 2 ns, after which hyperfine interactions thermally equilibrate the triplet-pair states, thus forming free single triplets within 50 ns.
ISSN:1948-7185
1948-7185
DOI:10.1021/acs.jpclett.3c02435