We present results from computer simulations that shed light on structural and dynamic characteristics of hydrogen bonding of aqueous phases at ambient conditions, at the close vicinity of electrified metal interfaces. Our simulation strategy relied on the consideration of a Hamiltonian that explicitly incorporates effects from polarization fluctuations at the metal surface, induced by the instantaneous local electric field promoted by the partial charges at the solvent molecules. Compared to bulk environments, our results reveal important modifications in the hydrogen bond architectures that critically depend on the atomic arrangements of the interfaces exposed to the liquid phases and the net charges allocated at the metal plates. These m...
Density functional theory molecular dynamics simulations of H-covered Pt(111)-H2O interfaces reveal ...
Understanding water dynamics at charged interfaces is of great importance in various fields, such as...
This paper presents a detailed study of a water adlayer adsorbed on Pt(111) and Rh(111) surfaces usi...
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...
Atomically flat, single-crystal solid-liquid interfaces attract considerable interest through their ...
We have applied molecular dynamics and methods of importance sampling to study structure and dynamic...
Hydrogen-bond (H-bond) dynamics in the air-water interface is studied by molecular dynamics simulati...
We have presented a molecular dynamics study of the dynamics of breaking and structural relaxation o...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
Computer simulation is employed to study the dynamics of a network of hydrogen bonds and the structu...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...
In models of Pt 111 and Pt 100 surfaces in water, motions of molecules in the first hydration layer ...
We prescribe an analytical form of the interaction potential between rigid water and a rigid platinu...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...
Density functional theory molecular dynamics simulations of H-covered Pt(111)-H2O interfaces reveal ...
Understanding water dynamics at charged interfaces is of great importance in various fields, such as...
This paper presents a detailed study of a water adlayer adsorbed on Pt(111) and Rh(111) surfaces usi...
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...
Atomically flat, single-crystal solid-liquid interfaces attract considerable interest through their ...
We have applied molecular dynamics and methods of importance sampling to study structure and dynamic...
Hydrogen-bond (H-bond) dynamics in the air-water interface is studied by molecular dynamics simulati...
We have presented a molecular dynamics study of the dynamics of breaking and structural relaxation o...
The structure and properties of water films in contact with metal surfaces are crucial to understand...
Computer simulation is employed to study the dynamics of a network of hydrogen bonds and the structu...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...
In models of Pt 111 and Pt 100 surfaces in water, motions of molecules in the first hydration layer ...
We prescribe an analytical form of the interaction potential between rigid water and a rigid platinu...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...
Density functional theory molecular dynamics simulations of H-covered Pt(111)-H2O interfaces reveal ...
Understanding water dynamics at charged interfaces is of great importance in various fields, such as...
This paper presents a detailed study of a water adlayer adsorbed on Pt(111) and Rh(111) surfaces usi...