We calculate the electro-osmotic mobility and surface conductivity at a solid-liquid interface from a modified Poisson-Boltzmann equation, including spatial variations of the dielectric function and the viscosity that where extracted previously from molecular dynamics simulations of aqueous interfaces. The low-dielectric region directly at the interface leads to a substantially reduced surface capacitance. At the same time, ions accumulate into a highly condensed interfacial layer, leading to the well-known saturation of the electro-osmotic mobility at large surface charge density regardless of the hydrodynamic boundary conditions. The experimentally well-established apparent excess surface conductivity follows from our model for all hydrod...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...
The dielectric constant and the viscosity of water at the interface of hydrophilic surfaces differ f...
We construct an analytical model to account for the influence of the subnanometer-wide interfacial l...
We construct an analytical model to account for the influence of the subnanometer-wide interfacial l...
We demonstrate, using molecular-dynamics computer simulations, the strong influence of surface wetta...
An exact solution to the Poisson-Boltzmann and Stokes equations is derived to describe the electric ...
International audienceWe present a simulation and modeling study of electro-osmotic flow of an aqueo...
International audienceWe present a simulation and modeling study of electro-osmotic flow of an aqueo...
International audienceWe present a simulation and modeling study of electro-osmotic flow of an aqueo...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
International audienceUsing classical molecular dynamics simulations we investigate the dielectric p...
We study the ion density, shear viscosity and electroosmotic mobility of an aqueous monovalent elect...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...
The dielectric constant and the viscosity of water at the interface of hydrophilic surfaces differ f...
We construct an analytical model to account for the influence of the subnanometer-wide interfacial l...
We construct an analytical model to account for the influence of the subnanometer-wide interfacial l...
We demonstrate, using molecular-dynamics computer simulations, the strong influence of surface wetta...
An exact solution to the Poisson-Boltzmann and Stokes equations is derived to describe the electric ...
International audienceWe present a simulation and modeling study of electro-osmotic flow of an aqueo...
International audienceWe present a simulation and modeling study of electro-osmotic flow of an aqueo...
International audienceWe present a simulation and modeling study of electro-osmotic flow of an aqueo...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
International audienceUsing classical molecular dynamics simulations we investigate the dielectric p...
We study the ion density, shear viscosity and electroosmotic mobility of an aqueous monovalent elect...
Using classical molecular dynamics simulations, we investigate the dielectric properties at interfac...
We derive the theoretical framework to calculate the dielectric response tensor and determine its co...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...