The interaction of liquid water with Pt(111) is investigated with classical molecular dynamics (MD) simulations, where the forces are determined using the third-generation charge optimized many-body (COMB3) interatomic potential. In cases of sub-monolayer water coverage, the parameterized empirical potential predicts experimentally observed and energetically favorable √37 and √39 reconstructed water structures with “575757” di-interstitial defects. At both sub-monolayer and multilayer water coverages, the structure of the first wetting layer of liquid water on Pt(111) exhibits a characteristic distribution where the molecules form two distinct buckled layers as a result of the interplay between water–metal adsorption and water–water hydroge...
We report on the application of the Car-Parrinello molecular dynamics method (CPMD) to the interacti...
All-atom classical force-field based molecular dynamics simulations have been employed to investigat...
International audienceWater molecules adsorbed on noble metal surfaces are of fundamental interest i...
The interaction of liquid water with Pt(111) is investigated with classical molecular dynamics (MD) ...
We prescribe an analytical form of the interaction potential between rigid water and a rigid platinu...
The interfacial dynamics of water in contact with bare, oxidized, and hydroxylated copper surfaces a...
We have applied molecular dynamics and methods of importance sampling to study structure and dynamic...
The aim of our work was to study the water structure at surfaces that contain imperfections. A serie...
It is generally accepted that the metal–water interface tensions are quite high; thus, the metal sur...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
A water droplet in contact with a platinum surface was simulated by the molecular dynamics method. W...
[[abstract]]This present work investigates the interactions between a nano-water droplet and an isot...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
Water-mediated hydrated proton solvation and diffusion at two types of platinum–water interfacesnam...
We report on the application of the Car-Parrinello molecular dynamics method (CPMD) to the interacti...
All-atom classical force-field based molecular dynamics simulations have been employed to investigat...
International audienceWater molecules adsorbed on noble metal surfaces are of fundamental interest i...
The interaction of liquid water with Pt(111) is investigated with classical molecular dynamics (MD) ...
We prescribe an analytical form of the interaction potential between rigid water and a rigid platinu...
The interfacial dynamics of water in contact with bare, oxidized, and hydroxylated copper surfaces a...
We have applied molecular dynamics and methods of importance sampling to study structure and dynamic...
The aim of our work was to study the water structure at surfaces that contain imperfections. A serie...
It is generally accepted that the metal–water interface tensions are quite high; thus, the metal sur...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
A water droplet in contact with a platinum surface was simulated by the molecular dynamics method. W...
[[abstract]]This present work investigates the interactions between a nano-water droplet and an isot...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
Water-mediated hydrated proton solvation and diffusion at two types of platinum–water interfacesnam...
We report on the application of the Car-Parrinello molecular dynamics method (CPMD) to the interacti...
All-atom classical force-field based molecular dynamics simulations have been employed to investigat...
International audienceWater molecules adsorbed on noble metal surfaces are of fundamental interest i...