The reaction field of a water molecule in liquid water: Comparison of different quantum/classical models
- 15 September 2001
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 115 (11) , 5220-5227
- https://doi.org/10.1063/1.1389094
Abstract
The reaction field of a water molecule in liquid water has been computed with the help of continuum, discrete-continuum, and discrete models, using density functional theory calculations. In the continuum model, the liquid is simply described by a polarizable dielectric medium. The solute is placed in a cavity defined by a scaled van der Waals surface. Two different sets of van der Waals radii have been used for the atomic spheres. The discrete-continuum model consists of a quantum molecule surrounded by four classical molecules, the resulting aggregate being embedded in a dielectric continuum. Finally, in the discrete model, a molecular dynamics simulation is carried out for a quantum molecule in a box containing 215 classical molecules with periodic boundary conditions. The reaction field and the induced dipole moment in the standard continuum model are substantially underestimated. However, the use of optimized van der Waals radii for the atomic spheres produces a notable improvement. The discrete-continuum and discrete models lead to close results that are in good agreement with experimental data and previous theoretical estimations. For instance, the induced dipole moment (0.80 and 0.82 D for discrete-continuum and discrete models, respectively) compares well with the experimental estimate (0.75 D) and with Car–Parrinello simulations (1.08 D). The reaction field potential is analyzed in terms of multipole moment contributions. The role of the first shell and bulk solvent are also examined.Keywords
This publication has 63 references indexed in Scilit:
- The electrostatic properties of water molecules in condensed phases: anab initiostudyMolecular Physics, 1999
- A Hybrid Density Functional-Classical Molecular Dynamics Simulation of a Water Molecule in Liquid WaterJournal of Molecular Modeling, 1995
- An optimized AM1/MST method for the MST‐SCRF representation of solvated systemsJournal of Computational Chemistry, 1994
- Comparison of simple potential functions for simulating liquid waterThe Journal of Chemical Physics, 1983
- Ab initio SCF calculations on electrostatically solvated molecules using a deformable three axes ellipsoidal cavityThe Journal of Chemical Physics, 1983
- The development of quantum mechanical solvent effect models. Microscopic electrostatic contributionsJournal of the American Chemical Society, 1976
- Theoretical studies of enzymic reactions: Dielectric, electrostatic and steric stabilization of the carbonium ion in the reaction of lysozymeJournal of Molecular Biology, 1976
- Polarisabilites moléculaires et effet diélectrique de milieu à l'état liquide. Étude théorique de la molécule d'eau et de ses diméresTheoretical Chemistry Accounts, 1973
- A contribution to the theory of the dielectric constant of polar liquidsPhysica, 1949
- Electric Moments of Molecules in LiquidsJournal of the American Chemical Society, 1936