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Gunnar Karlström

Professor emeritus

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Hybrid Monte Carlo simulations of vertical electronic transitions in acetone in aqueous solution

Author

  • Anders Öhrn
  • Gunnar Karlström

Summary, in English

A simulation of the n -> pi* absorption and the pi -> n fluorescence of acetone in aqueous solution is reported. The model has an explicit solvent representation with an effective ab initio treatment of the solute. The model attempts to balance quantum chemistry, intermolecular interactions and statistical thermodynamics. It includes a non-electrostatic perturbation on the solute which models the solute-solvent exchange repulsion and the restriction put on the electronic structure of the solute by the antisymmetry to the solvent. The solvent shift to the absorption transition is found to be between 0.16 and 0.21 eV; the shift to the fluorescence transition is found to be between 0.02 and 0.05 eV. The simulation supports the conclusion that the first peak in the fluorescence spectrum of acetone is from a single molecule in equilibrium with the solvent, not from an excimer.

Department/s

  • Computational Chemistry

Publishing year

2007

Language

English

Pages

441-449

Publication/Series

Theoretical Chemistry Accounts

Volume

117

Issue

3

Document type

Article

Publisher

Springer

Topic

  • Theoretical Chemistry (including Computational Chemistry)

Keywords

  • excited state
  • Pauli repulsion
  • acetone
  • explicit solvent model

Status

Published

ISBN/ISSN/Other

  • ISSN: 1432-881X