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Singlet Fission in Lycopene H-Aggregates

Chemical Physics 2023-08-31 v1 Strongly Correlated Electrons

Abstract

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 1Bu+^1B_u^+ state first relaxes and localizes onto a single lycopene monomer. The high-energy intramonomer state then undergoes internal conversion to the 11Bu1^1B_u^- state. Once populated, the 11Bu1^1B_u^- state allows exothermic bimolecular singlet fission, while its internal conversion to the 21Ag2^1A_g^- state is symmetry forbidden. The simulation of SF predicts that the intramonomer triplet-pair state undergoes complete population transfer to the intermonomer singlet triplet-pair state within 100 ps. ZFS interactions then 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 ca. 0.1 μ\mus.

Cite

@article{arxiv.2308.16013,
  title  = {Singlet Fission in Lycopene H-Aggregates},
  author = {William Barford},
  journal= {arXiv preprint arXiv:2308.16013},
  year   = {2023}
}
R2 v1 2026-06-28T12:08:23.188Z