Structure and dynamics of nonaqueous mixtures of dipolar liquids. II. Molecular dynamics simulations
- 22 August 2000
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 113 (8) , 3249-3260
- https://doi.org/10.1063/1.1287146
Abstract
Molecular dynamics simulations have been used to study mixtures of acetone/methanol, acetonitrile/methanol, and acetone/acetonitrile over their entire composition range. Using the effective pair potentials of the neat liquids, the simulations reproduce much of the experimental spectra presented in the previous paper [D. S. Venables, A. Chiu, and C. A. Schmuttenmaer, J. Chem. Phys. 113, 3243 (2000)]. In addition to the total dipole spectra, autocorrelation functions and their corresponding spectra were calculated for the single dipole moment as well as the translational and rotational velocities of each component in the mixtures. Radial and spatialdistribution functions,hydrogen bonding, and methanol chain formation in the mixtures were also analyzed. The red-shift of the high frequency librational band is attributed to methanol chains breaking up into shorter segments, and to hydrogen bonding between methanol and co-solvent molecules. Methanol molecules have a strong tendency to reside in chains, even at low methanol concentrations, and hydrogen bonding is the primary determinant of structure in the mixtures.Keywords
This publication has 35 references indexed in Scilit:
- Structure and dynamics of nonaqueous mixtures of dipolar liquids. I. Infrared and far-infrared spectroscopyThe Journal of Chemical Physics, 2000
- Hydrogen bonding influence on the intermolecular vibrational spectra of liquid methanolJournal of Molecular Liquids, 1995
- Monte Carlo simulation of liquid acetone with a polarizable molecular modelMolecular Physics, 1995
- Wave vector dependent dielectric relaxation in hydrogen-bonding liquids: A molecular dynamics study of methanolThe Journal of Chemical Physics, 1993
- Molecular-dynamics simulation of aqueous mixtures: Methanol, acetone, and ammoniaThe Journal of Chemical Physics, 1990
- Hydrogen bonding in liquid methanolThe Journal of Chemical Physics, 1990
- Relative partition coefficients for organic solutes from fluid simulationsThe Journal of Physical Chemistry, 1990
- Monte Carlo simulations of liquid acetonitrile with a three-site modelMolecular Physics, 1988
- Molecular-dynamics simulation of liquid methanolThe Journal of Physical Chemistry, 1987
- Optimized intermolecular potential functions for liquid alcoholsThe Journal of Physical Chemistry, 1986