Self-propelled droplet jumping on nanostructured superhydrophobic surfaces is of interest for a variety of industrial applications including self-cleaning, water harvesting, power generation, and thermal management systems. However, the uncontrolled nucleation-induced Wenzel state of condensed droplets at large surface subcooling (high heat flux) leads to the formation of unwanted large pinned droplets, which results in the flooding phenomenon and greatly degrades the heat transfer performance. In this work, we present a novel strategy to manipulate droplet behaviors during the process from the droplet nucleation to growth and departure through a combination of spatially controlling initial nucleation for mobile droplets by closely spaced n...
Nanostructured coatings offer the potential to create substrates with specific wetting properties. O...
Superhydrophobic surfaces are receiving increasing attention due to the enhanced condensation heat t...
Water vapor condensation on superhydrophobic surfaces has received much attention in recent years du...
Self-propelled droplet jumping on nanostructured superhydrophobic surfaces is of interest for a vari...
Superhydrophobic nanostructured surfaces can enhance water condensation efficiency by facilitating d...
When droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet can jump ...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
To increase the efficiency of jumping-droplet condensation, this study proposes a hierarchical super...
Rapid droplet removal by regulating surface topology and wettability has been exploited in nature an...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
Design of hierarchical micromorphology represents an important strategy for developing functional su...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Utilization of nanotechnologies in condensation has been recognized as one opportunity to improve th...
Superhydrophobic surfaces enhance condensation by inhibiting the formation of an insulating liquid l...
It was recently discovered that condensation growing on a nanostructured superhydrophobic surface ca...
Nanostructured coatings offer the potential to create substrates with specific wetting properties. O...
Superhydrophobic surfaces are receiving increasing attention due to the enhanced condensation heat t...
Water vapor condensation on superhydrophobic surfaces has received much attention in recent years du...
Self-propelled droplet jumping on nanostructured superhydrophobic surfaces is of interest for a vari...
Superhydrophobic nanostructured surfaces can enhance water condensation efficiency by facilitating d...
When droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet can jump ...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
To increase the efficiency of jumping-droplet condensation, this study proposes a hierarchical super...
Rapid droplet removal by regulating surface topology and wettability has been exploited in nature an...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
Design of hierarchical micromorphology represents an important strategy for developing functional su...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Utilization of nanotechnologies in condensation has been recognized as one opportunity to improve th...
Superhydrophobic surfaces enhance condensation by inhibiting the formation of an insulating liquid l...
It was recently discovered that condensation growing on a nanostructured superhydrophobic surface ca...
Nanostructured coatings offer the potential to create substrates with specific wetting properties. O...
Superhydrophobic surfaces are receiving increasing attention due to the enhanced condensation heat t...
Water vapor condensation on superhydrophobic surfaces has received much attention in recent years du...