The browser you are using is not supported by this website. All versions of Internet Explorer are no longer supported, either by us or Microsoft (read more here: https://www.microsoft.com/en-us/microsoft-365/windows/end-of-ie-support).

Please use a modern browser to fully experience our website, such as the newest versions of Edge, Chrome, Firefox or Safari etc.

Default user image.

Gunnar Karlström

Professor emeritus

Default user image.

pi* -> n fluorescence transition in formaldehyde in aqueous solution: A combined quantum chemical statistical mechanical study

Author

  • Anders Öhrn
  • Gunnar Karlström

Summary, in English

The solvent shift to the fluorescence transition pi* -> n in formaldehyde in aqueous Solution is theoretically analyzed. The solvent model has explicit representation of the solvent and uses the complete active space state interaction (CASSI) method to obtain a description of the wave function of the solute similar to what the complete active space self-consistent-field (CASSCF) method would give. In the description of-the solute-solvent interaction the discrete set of solvent molecules perturb the Solute not only through an electrostatic perturbation but also through a nonelectrostatic operator. The latter describes in a way analogous to pseudopotential theory the effect the Pauli principle has on the solute embedded in the solvent. This way the exchange repulsion between solute and solvent is accounted for which therefore can be anisotropic. The best estimate of the average shift is a blue shift of 0.003 eV, and for the current transition the nonelectrostatic perturbation broadens the distribution but has no significant effect on the average shift.

Department/s

  • Computational Chemistry

Publishing year

2006

Language

English

Pages

1934-1942

Publication/Series

The Journal of Physical Chemistry Part A: Molecules, Spectroscopy, Kinetics, Environment and General Theory

Volume

110

Issue

5

Document type

Article

Publisher

The American Chemical Society (ACS)

Topic

  • Theoretical Chemistry (including Computational Chemistry)

Status

Published

ISBN/ISSN/Other

  • ISSN: 1520-5215