Publication | Closed Access
Influence of Intermolecular Vibrations on the Electronic Coupling in Organic Semiconductors: The Case of Anthracene and Perfluoropentacene
82
Citations
51
References
2009
Year
Thermal FluctuationsEngineeringOrganic ElectronicsTransfer IntegralsOrganic ChemistryComputational ChemistryChemistryCharge TransportMolecular DynamicsMolecular KineticsCharge Carrier TransportBiophysicsMolecular SolidPhysicsOrganic SemiconductorElectronic Transfer IntegralsPhysical ChemistryQuantum ChemistryOrganic Charge-transfer CompoundOrganic Material ChemistryNatural SciencesElectronic CouplingApplied PhysicsOrganic SemiconductorsIntermolecular VibrationsMolecule-based Material
We have performed classical molecular dynamics simulations and quantum-chemical calculations on molecular crystals of anthracene and perfluoropentacene. Our goal is to characterize the amplitudes of the room-temperature molecular displacements and the corresponding thermal fluctuations in electronic transfer integrals, which constitute a key parameter for charge transport in organic semiconductors. Our calculations show that the thermal fluctuations lead to Gaussian-like distributions of the transfer integrals centered around the values obtained for the equilibrium crystal geometry. The calculated distributions have been plugged into Monte-Carlo simulations of hopping transport, which show that lattice vibrations impact charge transport properties to various degrees depending on the actual crystal structure.
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