Utilization of nanotechnologies in condensation has been recognized as one opportunity to improve the efficiency of large-scale thermal power and desalination systems. High-performance and stable dropwise condensation in widely-used copper heat exchangers is appealing for energy and water industries. In this work, a scalable and low-cost nanofabrication approach was developed to fabricate superhydrophobic copper oxide (CuO) nanoneedle surfaces to promote dropwise condensation and even jumping-droplet condensation. By conducting systematic surface characterization and in situ environmental scanning electron microscope (ESEM) condensation experiments, we were able to probe the microscopic formation physics of droplets on irregular nanostructu...
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...
Utilization of nanotechnologies in condensation has been recognized as one opportunity to improve th...
When droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet can jump ...
When droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet can jump ...
The miniaturization of electronic devices demands innovative cooling technologies to dissipate the h...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
Superhydrophobic surfaces are receiving increasing attention due to the enhanced condensation heat t...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
Superhydrophobic surfaces enhance the condensation heat transfer performance by facilitating removal...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
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...
Utilization of nanotechnologies in condensation has been recognized as one opportunity to improve th...
When droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet can jump ...
When droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet can jump ...
The miniaturization of electronic devices demands innovative cooling technologies to dissipate the h...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
Coalescence-induced jumping of condensate droplets has been studied as an emerging mode for enhanced...
Superhydrophobic surfaces are receiving increasing attention due to the enhanced condensation heat t...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
When condensed droplets coalesce on a superhydrophobic nanostructured surface, the resulting droplet...
Superhydrophobic surfaces enhance the condensation heat transfer performance by facilitating removal...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
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...