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Electronic photodissociation spectroscopy of Aun−⋅Xe (n=7–11) versus time-dependent density functional theory prediction
83
Citations
31
References
2004
Year
Electronic Photodissociation SpectroscopyEngineeringGold Cluster AnionsChemistryElectronic Excited StateExperimental ObservationPhotodepletion SpectraPhotophysical PropertyMolecular SpectroscopyCluster SciencePhysicsAtomic PhysicsPhysical ChemistryQuantum ChemistryExcited State PropertyNatural SciencesSpectroscopyApplied PhysicsCluster Chemistry
Electronic (one-photon) photodepletion spectra were recorded for gold cluster anions complexed with one xenon atom over the photon energy range 2.1-3.4 eV. Clusters were generated by pulsed laser vaporization and probed under collisionless molecular beam conditions. The spectra obtained are highly structured with the narrowest features--assigned to individual electronic transitions--having bandwidths of less than 40 meV. Time-dependent density functional theory predictions of optically allowed transitions for the most stable--planar--isomers of the corresponding bare metal cluster anions are generally consistent with the experimental observation.
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