In this paper, we present a computer simulation study of the ion binding process at an ionizable surface using a semi-grand canonical Monte Carlo method that models the surface as a discrete distribution of charged and neutral functional groups in equilibrium with explicit ions modelled in the context of the primitive model. The parameters of the simulation model were tuned and checked by comparison with experimental titrations of carboxylated latex particles in the presence of different ionic strengths of monovalent ions. The titration of these particles was analysed by calculating the degree of dissociation of the latex functional groups vs. pH curves at different background salt concentrations. As the charge of the titrated surface chang...
Grand canonical Monte Carlo (GCMC) simulations are reported for aqueous solutions containing excess ...
In this paper, we consider a simple model, based on the electronegativity concept, which makes it po...
Monte Carlo simulations are used to describe the charging behavior of metal oxide nanoparticles thus...
In this paper, we present a computer simulation study of the ion binding process at an ionizable sur...
In this paper, we present a computer simulation study of the ion binding process at an ionizable sur...
The influence of ion size and surface charge model in titrations of ionizable polyelectrolytes is st...
Abstract. The charge state of molecules and solid/liquid interfaces is of paramount importance in th...
Ion binding to acidic groups is a central mechanism for ion-specificity of macromolecules and surfac...
Ion binding to acidic groups is a central mechanism for ion-specificity of macromolecules and surfac...
International audienceThe charge state of molecules and solid/liquid interfaces is of paramount impo...
International audienceThe charge state of molecules and solid/liquid interfaces is of paramount impo...
Statistical mechanics has been used to derive a model for the charging of a spherical particle in a ...
We discuss a simple approach to describe the ion density around a polyelectrolyte chain, quantifying...
Charged particles in aqueous suspension form an electrical double layer at their surfaces, which pla...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...
Grand canonical Monte Carlo (GCMC) simulations are reported for aqueous solutions containing excess ...
In this paper, we consider a simple model, based on the electronegativity concept, which makes it po...
Monte Carlo simulations are used to describe the charging behavior of metal oxide nanoparticles thus...
In this paper, we present a computer simulation study of the ion binding process at an ionizable sur...
In this paper, we present a computer simulation study of the ion binding process at an ionizable sur...
The influence of ion size and surface charge model in titrations of ionizable polyelectrolytes is st...
Abstract. The charge state of molecules and solid/liquid interfaces is of paramount importance in th...
Ion binding to acidic groups is a central mechanism for ion-specificity of macromolecules and surfac...
Ion binding to acidic groups is a central mechanism for ion-specificity of macromolecules and surfac...
International audienceThe charge state of molecules and solid/liquid interfaces is of paramount impo...
International audienceThe charge state of molecules and solid/liquid interfaces is of paramount impo...
Statistical mechanics has been used to derive a model for the charging of a spherical particle in a ...
We discuss a simple approach to describe the ion density around a polyelectrolyte chain, quantifying...
Charged particles in aqueous suspension form an electrical double layer at their surfaces, which pla...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...
Grand canonical Monte Carlo (GCMC) simulations are reported for aqueous solutions containing excess ...
In this paper, we consider a simple model, based on the electronegativity concept, which makes it po...
Monte Carlo simulations are used to describe the charging behavior of metal oxide nanoparticles thus...