The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene templating to preserve and visualize the microscopic structures of adsorbed water on hydrophobic surfaces. Three well-defined surfaces [H–Si(111), graphite, and functionalized mica] were investigated, and water was found to adsorb as nanodroplets (∼10–100 nm in size) on all three surfaces under ambient conditions. The adsorbed nanodroplets were closely associated with atomic-scale surface defects and step-edges and wetted all the hydrophobic substrates with contact angles <∼10°, resulting in total water adsorption that was similar to what is found for hydrophilic surfaces. These results point to the significant differences between surface proc...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
Understanding the wettability of graphene is the crucial step toward the design and control of graph...
The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene t...
The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene t...
The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene t...
Although graphitic materials were thought to be hydrophobic, recent experimental results based on co...
bS Supporting Information Under ambient conditions, water adlayers are known to coatall hydrophilic ...
We study the wetting of graphene nanopowders by measuring the water adsorption in nanopowder flakes ...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
[EN] Hydration layers are formed on hydrophilic crystalline surfaces immersed in water. Their existe...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
Wetting is very common phenomenon, and it is well documented that the wettability of a solid depends...
Journal peer review information: Nature Communications thanks Mingdong Dong and other anonymous revi...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
Understanding the wettability of graphene is the crucial step toward the design and control of graph...
The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene t...
The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene t...
The interaction of water vapor with hydrophobic surfaces is poorly understood. We utilize graphene t...
Although graphitic materials were thought to be hydrophobic, recent experimental results based on co...
bS Supporting Information Under ambient conditions, water adlayers are known to coatall hydrophilic ...
We study the wetting of graphene nanopowders by measuring the water adsorption in nanopowder flakes ...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
[EN] Hydration layers are formed on hydrophilic crystalline surfaces immersed in water. Their existe...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
Wetting is very common phenomenon, and it is well documented that the wettability of a solid depends...
Journal peer review information: Nature Communications thanks Mingdong Dong and other anonymous revi...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
The structure of water confined in nanometer-sized cavities is important because, at this scale, a l...
Understanding the wettability of graphene is the crucial step toward the design and control of graph...