Gunnar Karlström
Professor emeritus
Study of the hydronium ion in water. A combined quantum chemical and statistical mechanical treatment
Author
Summary, in English
A combined quantum mechanical statistical mechanical method has been used to study the solvation of the hydronium ion in water. The system is divided in three parts, a quantum core (the ion), 89 classical water molecules and a dielectric continuum. The water molecules are represented using a polarizable potential. The first solvation shell of the ion consists of three water molecules linked by hydrogen bonds to the hydrogen atoms of the ion. The calculations show conformations where up to three water molecules directly interact with the oxygen of the ion. The intramolecular bond length in the ion increases by 0.080 a.u. and the angle decreases in 6.9degrees upon solvation relative to the gas phase value. (C) 2004 Elsevier B.V. All rights reserved.
Department/s
- Computational Chemistry
Publishing year
2004
Language
English
Pages
167-173
Publication/Series
Journal of molecular structure. Theochem
Volume
712
Issue
1-3
Document type
Article
Publisher
Elsevier
Topic
- Theoretical Chemistry (including Computational Chemistry)
Status
Published
ISBN/ISSN/Other
- ISSN: 0166-1280