The underlying mechanisms of specific ion effects on structure and dynamics of aqueous solutions have been long debated. On the other hand, the role of polarization at hydrophobic interfaces when aqueous electrolytes are present is of great importance, as it has been observed at the air–vapor interface. In this work, we have explored influence of ionic species on microscopical properties of aqueous sodium halide solutions constrained inside a double layer graphene channel, as a model for a realistic hydrophobic interface. Our systems have been simulated by molecular dynamics techniques, explicitly including polarization in water molecules and ions. Water and ionic density profiles showed the tendency of ionic species to occupy the whole spa...
Molecular dynamics simulations are used to examine the changes in water density and hydration charac...
We present results from theoretical studies of aqueous ionic solvation of alkali halides aimed at de...
The structure at the electrochemical liquid/liquid interface between water (W) and trioctylmethylamm...
The underlying mechanisms of specific ion effects on structure and dynamics of aqueous solutions hav...
The interfacial behavior of graphene is involved in a number of technological processes and applicat...
© 2020 Peiyao WangAqueous electrolytes confined in nanoporous materials are involved in many biologi...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
Interactions between ions and water at hydrophobic interfaces within ion channels and nanopores are ...
A proper description of ions at aqueous interfaces is a fundamental problem which has been thoroughl...
At the graphene–electrolyte interface, the polarizability of both the surface and the solution plays...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
International audienceUsing classical molecular dynamics simulations we investigate the dielectric p...
The presence of certain anions at the aqueous liquid-vapor interface is often attributed to polariza...
In this paper we analyze the properties of an interface between two immiscible electrolyte solutions...
Molecular dynamics simulations are used to examine the changes in water density and hydration charac...
Molecular dynamics simulations are used to examine the changes in water density and hydration charac...
We present results from theoretical studies of aqueous ionic solvation of alkali halides aimed at de...
The structure at the electrochemical liquid/liquid interface between water (W) and trioctylmethylamm...
The underlying mechanisms of specific ion effects on structure and dynamics of aqueous solutions hav...
The interfacial behavior of graphene is involved in a number of technological processes and applicat...
© 2020 Peiyao WangAqueous electrolytes confined in nanoporous materials are involved in many biologi...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
Interactions between ions and water at hydrophobic interfaces within ion channels and nanopores are ...
A proper description of ions at aqueous interfaces is a fundamental problem which has been thoroughl...
At the graphene–electrolyte interface, the polarizability of both the surface and the solution plays...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
International audienceUsing classical molecular dynamics simulations we investigate the dielectric p...
The presence of certain anions at the aqueous liquid-vapor interface is often attributed to polariza...
In this paper we analyze the properties of an interface between two immiscible electrolyte solutions...
Molecular dynamics simulations are used to examine the changes in water density and hydration charac...
Molecular dynamics simulations are used to examine the changes in water density and hydration charac...
We present results from theoretical studies of aqueous ionic solvation of alkali halides aimed at de...
The structure at the electrochemical liquid/liquid interface between water (W) and trioctylmethylamm...