The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluorooctanoate have been investigated, using large-scale atomistic molecular dynamics simulations, with the primary objective of classifying them. The simulations show that the water molecules at the interface fall into two broad classes: bound and free, present in a ratio of 9:1. The bound water molecules can be further categorized on the basis of the number of hydrogen bonds (one or two) that they form with the surfactant headgroups. The hydrogen bonds of the doubly hydrogen-bonded species are found to be, on the average, slightly weaker than those in the singly bonded species. The environment around interfacial water molecules is more o...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
Surfactants reduce the interfacial tension between phases, making them an important additive in a nu...
The dynamics of hydrogen bonds among water molecules themselves and with the polar head groups (PHG)...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
In order to understand the nature and dynamics of interfacial water molecules on the surface of comp...
Atomistic molecular dynamics simulations revealed the existence of bound and free water molecules in...
The dynamics of water molecules and ions near an aqueous micellar interface is a subject of intense ...
In order to understand the nature and dynamics of interfacial water molecules on the surface of comp...
In order to study the temperature dependence of water dynamics at the surface of a self-organized as...
Water, because of its fundamental role in biology, geology, and many industrial applications and its...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
Surfactants reduce the interfacial tension between phases, making them an important additive in a nu...
The dynamics of hydrogen bonds among water molecules themselves and with the polar head groups (PHG)...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
The structure and energetics of interfacial water molecules in the aqueous micelle of cesium perfluo...
In order to understand the nature and dynamics of interfacial water molecules on the surface of comp...
Atomistic molecular dynamics simulations revealed the existence of bound and free water molecules in...
The dynamics of water molecules and ions near an aqueous micellar interface is a subject of intense ...
In order to understand the nature and dynamics of interfacial water molecules on the surface of comp...
In order to study the temperature dependence of water dynamics at the surface of a self-organized as...
Water, because of its fundamental role in biology, geology, and many industrial applications and its...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
We report a theoretical study of the structure and dynamics of the water layer (the hydration layer)...
Surfactants reduce the interfacial tension between phases, making them an important additive in a nu...
The dynamics of hydrogen bonds among water molecules themselves and with the polar head groups (PHG)...