Physical Review Letters · 1969 · 106 citations · 10 references
Crystal StructureLocalized Excited StateEngineeringExcitation Energy TransferChemistryElectronic Excited StateTriplet Exciton DiffusionQuantum MaterialsAnthracene CrystalsPhysicsCrystal MaterialTriplet-exciton-diffusion TensorTriplet MigrationOrganic SemiconductorPhysical ChemistryQuantum ChemistryCrystallographySolid-state PhysicNatural SciencesCondensed Matter PhysicsApplied PhysicsChemical Kinetics
Consistent with theoretical predictions, the triplet-exciton-diffusion tensor is found to be strongly anisotropic in anthracene crystals at room temperature. Triplet migration in anthracene is essentially two-dimensional, restricted to the $\mathrm{ab}$ plane.
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Spectroscopic Approach to Triplet Exciton Dynamics in Anthracene
P. Avakian, V. Ern, R. E. Merrifield et al. · Physical Review · 1968 · 110 citations
Engineering, Excitation Energy Transfer, Computational Chemistry +16