Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dynamics for a wide range of technological applications. However, the tendency of condensed droplets to form as pinned states greatly limits their applicability in enhancing condensation heat transfer efficiency. Despite recent progresses, the understanding of physical mechanisms governing the wetting transition of condensed droplets is still lacking. In this work, a nanostructured superhydrophobic surface with tapered nanogaps is fabricated to demonstrate the coordination of surface wetting property, topography, and the condensing condition on the wetting state and dynamic behavior of condensed droplets. Combining the environmental scanning el...
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...
Superhydrophobic state on natural materials and synthesized surfaces has been exploited in a broad r...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Superhydrophobic nanostructured surfaces can enhance water condensation efficiency by facilitating d...
Nanostructured surfaces which manifest superhydrophobic properties during water condensation have a ...
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...
Superhydrophobic state on natural materials and synthesized surfaces has been exploited in a broad r...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Superhydrophobic nanostructured surfaces can enhance water condensation efficiency by facilitating d...
Nanostructured surfaces which manifest superhydrophobic properties during water condensation have a ...
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...
Superhydrophobic state on natural materials and synthesized surfaces has been exploited in a broad r...