Water vapor condensation on hydrophobic surfaces has received much attention due to its ability to rapidly shed water droplets and enhance heat transfer, anti-icing, water harvesting, energy harvesting, and self-cleaning performance. However, the mechanism of heterogeneous nucleation on hydrophobic surfaces remains poorly understood and is attributed to defects in the hydrophobic coating exposing the high surface energy substrate. Here, we observe the formation of high surface energy nanoscale agglomerates on hydrophobic coatings after condensation/evaporation cycles in ambient conditions. To investigate the deposition dynamics, we studied the nanoscale agglomerates as a function of condensation/evaporation cycles via optical and field emis...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Water vapor condensation on hydrophobic surfaces has received much attention due to its ability to r...
Vapor condensation is routinely observed in nature and has a large influence on the performance of a...
During dropwise condensation on a hydrophobic surface, it is intuitively assumed that droplets will ...
During dropwise condensation on a hydrophobic surface, it is intuitively assumed that droplets will ...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Nanostructured surfaces which manifest superhydrophobic properties during water condensation have a ...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Water vapor condensation on hydrophobic surfaces has received much attention due to its ability to r...
Vapor condensation is routinely observed in nature and has a large influence on the performance of a...
During dropwise condensation on a hydrophobic surface, it is intuitively assumed that droplets will ...
During dropwise condensation on a hydrophobic surface, it is intuitively assumed that droplets will ...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Nanostructured surfaces which manifest superhydrophobic properties during water condensation have a ...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
We demonstrate that water is almost universally present on apparently dry self-assembled monolayers,...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...