First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how the molecular behavior of interfacial water is influenced by specific surface adsorbates. Although the overall hydrophobic versus hydrophilic character of a given surface is widely recognized to be important in determining the behavior of interfacial water molecules, we show that subtle molecular details may also play a role in determining the dynamical behavior of water. By comparing water diffusivity at three different nonpolar surfaces, we find that specific surface features can lead to a suppression of hydrogen bond network ring structures by enhancing hexagonal spatial distributions of water molecules near the surface. Such a distinct m...
Understanding how material properties affect hydrophobic interactionsthe water-mediated interaction...
We have analyzed various surface properties for a number of simulated surfaces with water as one of ...
As a chemical and structural simple hydrophilic material, Mg(OH)<sub>2</sub> exhibits great potenti...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
Molecular dynamics simulations are performed to study the dynamics of interfacial water confined in ...
The interactions of water with solid surfaces govern their apparent hydrophobicity/hydrophilicity, i...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
By means of molecular dynamics simulations we study the structure and dynamics of water molecules in...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
The upsurge of interest in the nature of water adjacent to hydrophobic liquids is due in part to the...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
Molecular dynamics simulations have been used to study the structure of water molecules adjacent to ...
The air-water interface has been a subject of extensive theoretical and experimental studies due to ...
Understanding how material properties affect hydrophobic interactionsthe water-mediated interaction...
We have analyzed various surface properties for a number of simulated surfaces with water as one of ...
As a chemical and structural simple hydrophilic material, Mg(OH)<sub>2</sub> exhibits great potenti...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
Molecular dynamics simulations are performed to study the dynamics of interfacial water confined in ...
The interactions of water with solid surfaces govern their apparent hydrophobicity/hydrophilicity, i...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
By means of molecular dynamics simulations we study the structure and dynamics of water molecules in...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
The upsurge of interest in the nature of water adjacent to hydrophobic liquids is due in part to the...
Dynamic properties at the liquid-vapor interface of water are investigated at 298 K on the basis of ...
Molecular dynamics simulations have been used to study the structure of water molecules adjacent to ...
The air-water interface has been a subject of extensive theoretical and experimental studies due to ...
Understanding how material properties affect hydrophobic interactionsthe water-mediated interaction...
We have analyzed various surface properties for a number of simulated surfaces with water as one of ...
As a chemical and structural simple hydrophilic material, Mg(OH)<sub>2</sub> exhibits great potenti...