Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based Molecular Aggregates

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Last updated 11 março 2025
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Exciton Trapping in π-Conjugated Materials: A Quantum-Chemistry-Based Protocol Applied to Perylene Bisimide Dye Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast Exciton Delocalization, Localization, and Excimer Formation Dynamics in a Highly Defined Perylene Bisimide Quadruple π-Stack
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Exciton Dynamics and Self-Trapping of Carbocyanine J-Aggregates in Polymer Films
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Suppressing Excimers in H‑Aggregates of Perylene Bisimide Folda- Dimer: Role of Dimer Conformation and Competing Assembly Pathways
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
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Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
PDF) Steering the multiexciton generation in slip-stacked perylene dye array via exciton coupling
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Safeguarding long-lived excitons from excimer traps in H-aggregated dye-assemblies - Chemical Science (RSC Publishing) DOI:10.1039/D0SC01784A

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