We present the results of atomistic molecular dynamics simulations with regard to specific ion effects in water, methanol and N,N-dimethylacetamide (DMAc). As a reference system, we introduce rigid and rod-like models of polyanions and polycations in combination with alkali metal cations and halide anions as counterions. Pronounced specific ion effects can be observed in terms of the individual anion and cation condensation behavior. The outcomes of our simulations thus reveal significant deviations from standard electrostatic mean-field theories. A detailed investigation of the individual energy contributions shows that ion–dipole interactions play a pivotal role in rationalizing the findings. The corresponding deviations in terms of the c...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
Structural, thermodynamic and transport properties have been calculated in concentrated non-aqueous ...
The monovalent ions Na+ and K+ and Cl− are present in any living organism. The fundamental thermodyn...
This thesis explores ion-specific effects in aqueous electrolyte solutions and aqueous polymer solut...
Polyelectrolytes reveal interesting properties in solution. At short length scales,the dissociation ...
The study of the coupling between the conformational properties of a polyelectrolyte chain and the d...
Metal ions solvated in aqueous, non-aqueous, and mixtures of solvents occur in many chemical context...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
We performed atomistic molecular dynamics simulations of anionic and cationic micelles in the presen...
We have performed molecular dynamics (MD) simulations to explore the structure and dynamics of the i...
The influence of ion size and surface charge model in titrations of ionizable polyelectrolytes is st...
© 2017 American Chemical Society. We illustrate the effects of chain connectivity on the solvation e...
The titration behavior of weak polyelectrolytes is of high importance, due to their uses in new tech...
Minute concentrations of big hydrophobic ions have the ability to induce substantial effects in soft...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
Structural, thermodynamic and transport properties have been calculated in concentrated non-aqueous ...
The monovalent ions Na+ and K+ and Cl− are present in any living organism. The fundamental thermodyn...
This thesis explores ion-specific effects in aqueous electrolyte solutions and aqueous polymer solut...
Polyelectrolytes reveal interesting properties in solution. At short length scales,the dissociation ...
The study of the coupling between the conformational properties of a polyelectrolyte chain and the d...
Metal ions solvated in aqueous, non-aqueous, and mixtures of solvents occur in many chemical context...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
We performed atomistic molecular dynamics simulations of anionic and cationic micelles in the presen...
We have performed molecular dynamics (MD) simulations to explore the structure and dynamics of the i...
The influence of ion size and surface charge model in titrations of ionizable polyelectrolytes is st...
© 2017 American Chemical Society. We illustrate the effects of chain connectivity on the solvation e...
The titration behavior of weak polyelectrolytes is of high importance, due to their uses in new tech...
Minute concentrations of big hydrophobic ions have the ability to induce substantial effects in soft...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
Structural, thermodynamic and transport properties have been calculated in concentrated non-aqueous ...
The monovalent ions Na+ and K+ and Cl− are present in any living organism. The fundamental thermodyn...