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Atomistic mechanisms of rapid energy transport in light-harvesting molecules
10
Citations
9
References
2011
Year
EngineeringPhotochemistrySynthetic SupermoleculesNatural SciencesMechanistic Photochemistryπ-Conjugated Light-harvesting DendrimersExcitation Energy TransferDexter MechanismPhotophysical PropertyMolecular SimulationChemistryEnergyQuantum ChemistryMolecular DynamicsAtomistic MechanismsBiophysics
Synthetic supermolecules such as π-conjugated light-harvesting dendrimers efficiently harvest energy from sunlight, which is of significant importance for the global energy problem. Key to their success is rapid transport of electronic excitation energy from peripheral antennas to photochemical reaction cores, the atomistic mechanisms of which remains elusive. Here, quantum-mechanical molecular dynamics simulation incorporating nonadiabatic electronic transitions reveals the key molecular motion that significantly accelerates the energy transport based on the Dexter mechanism.
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