Molecular dynamics study of solvation effects on acid dissociation in aprotic media
- 1 May 1996
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 104 (17) , 6560-6568
- https://doi.org/10.1063/1.471375
Abstract
Acidionization in aprotic media is studied using molecular dynamics techniques. In particular, models for HCl ionization in acetonitrile and dimethylsulfoxide are investigated. The proton is treated quantum mechanically using Feynman path integral methods and the remaining molecules are treated classically. Quantum effects are shown to be essential for the proper treatment of the ionization. The potential of mean force is computed as a function of the ion pair separation and the local solvent structure is examined. The computed dissociation constants in both solvents differ by several orders of magnitude which are in reasonable agreement with experimental results. Solvent separated ion pairs are found to exist in dimethylsulfoxide but not in acetonitrile. Dissociation mechanisms in small clusters are also investigated. Solvent separated ion pairs persist even in aggregates composed of rather few molecules, for instance, as few as 30 molecules. For smaller clusters or for large ion pair separations cluster finite‐size effects come into play in a significant fashion.Keywords
All Related Versions
This publication has 26 references indexed in Scilit:
- Dynamics of ion pair interconversion in a polar solventThe Journal of Chemical Physics, 1990
- Rigorous formulation of quantum transition state theory and its dynamical correctionsThe Journal of Chemical Physics, 1989
- Density-functional exchange-energy approximation with correct asymptotic behaviorPhysical Review A, 1988
- Quantum-classical crossover of the transition rate in the damped double wellJournal of Physics C: Solid State Physics, 1987
- Accurate and simple density functional for the electronic exchange energy: Generalized gradient approximationPhysical Review B, 1986
- Dynamics of a sodium chloride ion pair in waterJournal of the American Chemical Society, 1986
- An extension of the canonical ensemble molecular dynamics methodMolecular Physics, 1986
- Accurate spin-dependent electron liquid correlation energies for local spin density calculations: a critical analysisCanadian Journal of Physics, 1980
- Computer "Experiments" on Classical Fluids. I. Thermodynamical Properties of Lennard-Jones MoleculesPhysical Review B, 1967
- Acid-Base Equilibria in Acetonitrile. Spectrophotometric and Conductometric Determination of the Dissociation of Various Acids1Journal of the American Chemical Society, 1961