Publication | Closed Access
Ab Initio Molecular Dynamics and Time-Resolved Photoelectron Spectroscopy of Electronically Excited Uracil and Thymine
384
Citations
47
References
2007
Year
Electronically Excited UracilLocalized Excited StateEngineeringMolecular BiologyExcitation Energy TransferComputational ChemistryChemistryElectronic Excited StateMolecular DynamicsPhotophysical PropertyBiophysicsExcited UracilPhotochemistryPhysicsPhysical ChemistryQuantum ChemistryTime-resolved Photoelectron SpectroscopyMultiple Electronic StatesExcited State PropertyNatural SciencesSpectroscopyExcited Electronic States
The reaction dynamics of excited electronic states in nucleic acid bases is a key process in DNA photodamage. Recent ultrafast spectroscopy experiments have shown multicomponent decays of excited uracil and thymine, tentatively assigned to nonadiabatic transitions involving multiple electronic states. Using both quantum chemistry and first principles quantum molecular dynamics methods we show that a true minimum on the bright S2 electronic state is responsible for the first step that occurs on a femtosecond time scale. Thus the observed femtosecond decay does not correspond to surface crossing as previously thought. We suggest that subsequent barrier crossing to the minimal energy S2/S1 conical intersection is responsible for the picosecond decay.
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