| Literature DB >> 24844735 |
Miguel A Soler1, Tammie Nelson, Adrian E Roitberg, Sergei Tretiak, Sebastian Fernandez-Alberti.
Abstract
Using analytical excited-state gradients, vibrational normal modes have been calculated at the minimum of the electronic excited-state potential energy surfaces for a set of extended conjugated molecules with different coupling between them. Molecular model systems composed of units of polyphenylene ethynylene (PPE), polyphenylenevinylene (PPV), and naphthacene/pentacene (NP) have been considered. In all cases except the NP model, the influence of the nonadiabatic coupling on the excited-state equilibrium normal modes is revealed as a unique highest frequency adiabatic vibrational mode that overlaps with the coupling vector. This feature is removed by using a locally diabatic representation in which the effect of NA interaction is removed. Comparison of the original adiabatic modes with a set of vibrational modes computed in the locally diabatic representation demonstrates that the effect of nonadiabaticity is confined to only a few modes. This suggests that the nonadiabatic character of a molecular system may be detected spectroscopically by identifying these unique state-specific high frequency vibrational modes.Entities:
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Year: 2014 PMID: 24844735 DOI: 10.1021/jp503350k
Source DB: PubMed Journal: J Phys Chem A ISSN: 1089-5639 Impact factor: 2.781