Using molecular dynamics simulations we probe the structure and interactions at the water liquid-vapor (LV) interface. In the interfacial region, strong ordering of dipole moments is observed, where water molecules exhibit "frustrated" orientations. By selectively analyzing the dipolar potential of mean force between these frustrated molecules and other molecules, we find a significant enhancement of dipolar interactions across the interfacial region. This interaction is derived in terms of a component of the surface tension, with a temperature-dependent magnitude of Ôê=Ôê20 mN m-1, representing a stabilizing interaction at the interface. This stabilization has the same magnitude, but opposite sign, to the surface tension of alkan...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
The surface of liquid water is characterized by large fluctuations that are too complex to describe ...
Using molecular dynamics simulations we probe the structure and interactions at the water liquid–vap...
International audienceSurface tension, gamma, strongly affects interfacial properties in fluids. The...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
We have performed molecular dynamics simulation studies of the structural, thermodynamic, and dynami...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
In this paper we present results of a detailed and systematic molecular dynamics study of the water/...
The structure of liquid water in the proximity of an interface can deviate significantly from that o...
The structure of liquid water in the proximity of an interface can deviate significantly from that o...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
The surface of liquid water is characterized by large fluctuations that are too complex to describe ...
Using molecular dynamics simulations we probe the structure and interactions at the water liquid–vap...
International audienceSurface tension, gamma, strongly affects interfacial properties in fluids. The...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
We have performed molecular dynamics simulation studies of the structural, thermodynamic, and dynami...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
In this paper we present results of a detailed and systematic molecular dynamics study of the water/...
The structure of liquid water in the proximity of an interface can deviate significantly from that o...
The structure of liquid water in the proximity of an interface can deviate significantly from that o...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
International audienceUnderstanding ion transport across interfaces is of fundamental importance in ...
The surface of liquid water is characterized by large fluctuations that are too complex to describe ...