Publication | Closed Access
Computational Prediction for Singlet- and Triplet-Transition Energies of Charge-Transfer Compounds
322
Citations
44
References
2013
Year
Localized Excited StateEngineeringExcitation Energy TransferComputational ChemistryVertical Transition EnergyChemistryElectronic Excited StateCharge TransportExcited TripletCharge SeparationComputational PredictionCharge Carrier TransportPhysicsPhysical ChemistryQuantum ChemistryAb-initio MethodOrganic Charge-transfer CompoundExcited State PropertyFirst TripletNatural Sciences
Our work reveals a high dependence on charge-transfer (CT) amounts for the optimal Hartree-Fock percentage in the exchange-correlation functional of time-dependent density functional theory (TD-DFT) and the error of a vertical transition energy calculated by a given functional. Using these relations, the zero-zero transition energies of the first singlet and first triplet excited states of various CT compounds are accurately reproduced. (3)CT and locally excited triplet ((3)LE) states are well distinguished and calculated independently.
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