A single sodium chloride molecule in aqueous solution was simulated by the ab initio quantum mechanical charge field-molecular dynamics (QMCF-MD) approach. During a series of simulations the solvated molecule (CIP), dissociated solvated ions and - most noticeably - a solvent separated ion pair (SSIP) were observed and the structural and dynamical characteristics of these systems were investigated. In addition to a detailed structural analysis of the observed species, vibrational spectra and charge distributions were calculated to elucidate the mechanism of the NaCl dissociation
The structural, dynamic, and thermodynamic properties of an excess electron interacting with an alka...
The ion-specific effects at the water/air interface represent a fundamentally essential topic of res...
Five solutions of sodium chloride in mixtures of water and dimethyl sulphoxide (DMSO) have been simu...
A single sodium chloride molecule in aqueous solution was simulated by the ab initio quantum mechani...
Water-mediated ion-pair dissociation is studied by molecular dynamics simulations of NaCl in water. ...
Different ion pairs exhibit different dissociation kinetics; however, the underlying mechanism remai...
The extent of ion pairing in solution is an important phenomenon to rationalise transport and thermo...
Calculations on NaCl microsolvated with up to 10 water molecules were performed by treating the NaCl...
ABSTRACT: We investigate the solvent effects leading to dissociation of sodium chloride in water. Th...
Knowledge of the hydration structure of Na<sup>+</sup> and K<sup>+</sup> in the liquid phase has wid...
The investigation of salts in water at extreme conditions is crucial to understanding the properties...
We have performed molecular dynamics (MD) simulations to explore the structure and dynamics of the i...
An understanding of aqueous ionic solutions is essential in developing a mechanistic view of many bi...
PhD thesisHighly concentrated aqueous solutions occur in a variety of natural and engineered chemica...
Metal ions solvated in aqueous, non-aqueous, and mixtures of solvents occur in many chemical context...
The structural, dynamic, and thermodynamic properties of an excess electron interacting with an alka...
The ion-specific effects at the water/air interface represent a fundamentally essential topic of res...
Five solutions of sodium chloride in mixtures of water and dimethyl sulphoxide (DMSO) have been simu...
A single sodium chloride molecule in aqueous solution was simulated by the ab initio quantum mechani...
Water-mediated ion-pair dissociation is studied by molecular dynamics simulations of NaCl in water. ...
Different ion pairs exhibit different dissociation kinetics; however, the underlying mechanism remai...
The extent of ion pairing in solution is an important phenomenon to rationalise transport and thermo...
Calculations on NaCl microsolvated with up to 10 water molecules were performed by treating the NaCl...
ABSTRACT: We investigate the solvent effects leading to dissociation of sodium chloride in water. Th...
Knowledge of the hydration structure of Na<sup>+</sup> and K<sup>+</sup> in the liquid phase has wid...
The investigation of salts in water at extreme conditions is crucial to understanding the properties...
We have performed molecular dynamics (MD) simulations to explore the structure and dynamics of the i...
An understanding of aqueous ionic solutions is essential in developing a mechanistic view of many bi...
PhD thesisHighly concentrated aqueous solutions occur in a variety of natural and engineered chemica...
Metal ions solvated in aqueous, non-aqueous, and mixtures of solvents occur in many chemical context...
The structural, dynamic, and thermodynamic properties of an excess electron interacting with an alka...
The ion-specific effects at the water/air interface represent a fundamentally essential topic of res...
Five solutions of sodium chloride in mixtures of water and dimethyl sulphoxide (DMSO) have been simu...