Acid ionization 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 ...
With a pK(a) of 2.0, HSO4- is not a strong acid as its dissociation percentage is only-10% in a solu...
For this thesis work, equilibrium (EMD) and non-equilibrium (NEMD) molecular dynamics simulations ha...
The dissociation of a water molecule in Liquid water is the fundamental event in acid-base chemistry...
Molecular dynamics simulation studies have been performed for a series of polar mixtures of acetone ...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
A constrained molecular dynamics (MD) method for the calculation of the potential of mean force is d...
A constrained molecular dynamics (MD) method for the calculation of the potential of mean force is d...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
A single sodium chloride molecule in aqueous solution was simulated by the ab initio quantum mechani...
We have performed molecular dynamics (MD) simulations to explore the structure and dynamics of the i...
In this work, computational studies of clusters were performed to understand solvent effects on chem...
We present molecular dynamics simulations of glutamic acid and glutamate solvated in water, using bo...
Constrained molecular dynamics simulations have been used to investigate ion pairing in water - DMSO...
The dissociation of a water molecule in liquid water is the fundamental event in acid-base chemistry...
With a pK(a) of 2.0, HSO4- is not a strong acid as its dissociation percentage is only-10% in a solu...
With a pK(a) of 2.0, HSO4- is not a strong acid as its dissociation percentage is only-10% in a solu...
For this thesis work, equilibrium (EMD) and non-equilibrium (NEMD) molecular dynamics simulations ha...
The dissociation of a water molecule in Liquid water is the fundamental event in acid-base chemistry...
Molecular dynamics simulation studies have been performed for a series of polar mixtures of acetone ...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
A constrained molecular dynamics (MD) method for the calculation of the potential of mean force is d...
A constrained molecular dynamics (MD) method for the calculation of the potential of mean force is d...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
A single sodium chloride molecule in aqueous solution was simulated by the ab initio quantum mechani...
We have performed molecular dynamics (MD) simulations to explore the structure and dynamics of the i...
In this work, computational studies of clusters were performed to understand solvent effects on chem...
We present molecular dynamics simulations of glutamic acid and glutamate solvated in water, using bo...
Constrained molecular dynamics simulations have been used to investigate ion pairing in water - DMSO...
The dissociation of a water molecule in liquid water is the fundamental event in acid-base chemistry...
With a pK(a) of 2.0, HSO4- is not a strong acid as its dissociation percentage is only-10% in a solu...
With a pK(a) of 2.0, HSO4- is not a strong acid as its dissociation percentage is only-10% in a solu...
For this thesis work, equilibrium (EMD) and non-equilibrium (NEMD) molecular dynamics simulations ha...
The dissociation of a water molecule in Liquid water is the fundamental event in acid-base chemistry...