Surfaces are able to control physical-chemical processes in multi-component solution systems and, as such, find application in a wide range of technological devices. Understanding the structure, dynamics and thermodynamics of non-ideal solutions at surfaces, however, is particularly challenging. Here, we use Constant Chemical Potential Molecular Dynamics simulations to gather insight into aqueous NaCl solutions in contact with graphite surfaces at high concentrations and under the effect of applied surface charges: conditions where mean-field theories describing interfaces cannot be (typically) reliably applied. We discover an asymmetric effect of surface charge on the double layer structure and resulting thermodynamic properties, which can...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
Graphite and related sp2 carbons are ubiquitous electrode materials with particular promise for use ...
We present the coupling of two frameworks -- the pseudo-open boundary simulation method known as con...
We study, using Density Functional theory (DFT) and Monte Carlo simulations, aqueous electrolyte sol...
We investigate the interfacial structure of ionic solutions consisting of alkali halide ions in wate...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
We report molecular dynamics simulation results obtained for aqueous NaCl and CaCl<sub>2</sub> solut...
The physical origin of charged interfaces involving electrolyte solutions is in the thermodynamic eq...
Electrostatic interactions near surfaces and interfaces are ubiquitous in many fields of science. Co...
Electric double layers are ubiquitous, arising in some form in almost every situation involving an i...
The interfacial behavior of graphene is involved in a number of technological processes and applicat...
Understanding the response of the surface of metallic solids to external electric field sources is c...
The study of charged solid–liquid interfaces, manifested as “double layers”, represents a problem of...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
Graphite and related sp2 carbons are ubiquitous electrode materials with particular promise for use ...
We present the coupling of two frameworks -- the pseudo-open boundary simulation method known as con...
We study, using Density Functional theory (DFT) and Monte Carlo simulations, aqueous electrolyte sol...
We investigate the interfacial structure of ionic solutions consisting of alkali halide ions in wate...
Whether or not specific ion effects determine the charge storage properties of aqueous graphene and ...
We report molecular dynamics simulation results obtained for aqueous NaCl and CaCl<sub>2</sub> solut...
The physical origin of charged interfaces involving electrolyte solutions is in the thermodynamic eq...
Electrostatic interactions near surfaces and interfaces are ubiquitous in many fields of science. Co...
Electric double layers are ubiquitous, arising in some form in almost every situation involving an i...
The interfacial behavior of graphene is involved in a number of technological processes and applicat...
Understanding the response of the surface of metallic solids to external electric field sources is c...
The study of charged solid–liquid interfaces, manifested as “double layers”, represents a problem of...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...