Many vital processes taking place in electrolytes, such as nanoparticle self-assembly, water purification, and the operation of aqueous supercapacitors, rely on the precise many-body interactions between surfaces and ions in water. Here we study the interaction between a hydrated ion and a charge-neutral graphene layer using atomistic molecular dynamics simulations. For small separations, the ion–graphene repulsion is of nonelectrostatic nature, and for intermediate separations, van der Waals attraction becomes important. Contrary to prevailing theory, we show that nonlinear and tensorial dielectric effects become non-negligible close to surfaces, even for monovalent ions. This breakdown of standard isotropic linear dielectric theory has im...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
A proper description of ions at aqueous interfaces is a fundamental problem which has been thoroughl...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
International audienceUsing classical molecular dynamics simulations we investigate the dielectric p...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
The interfacial behavior of graphene is involved in a number of technological processes and applicat...
Electrostatic interactions near surfaces and interfaces are ubiquitous in many fields of science. Co...
By treating both the short-range (solvation) and long-range (image force) electrostatic forces as we...
We present the coupling of two frameworks -- the pseudo-open boundary simulation method known as con...
© 2020 Peiyao WangAqueous electrolytes confined in nanoporous materials are involved in many biologi...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
A proper description of ions at aqueous interfaces is a fundamental problem which has been thoroughl...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
International audienceUsing classical molecular dynamics simulations we investigate the dielectric p...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
The interfacial behavior of graphene is involved in a number of technological processes and applicat...
Electrostatic interactions near surfaces and interfaces are ubiquitous in many fields of science. Co...
By treating both the short-range (solvation) and long-range (image force) electrostatic forces as we...
We present the coupling of two frameworks -- the pseudo-open boundary simulation method known as con...
© 2020 Peiyao WangAqueous electrolytes confined in nanoporous materials are involved in many biologi...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
A proper description of ions at aqueous interfaces is a fundamental problem which has been thoroughl...
The adsorption of ions to aqueous interfaces is a phenomenon that profoundly influences vital proces...