While superhydrophobic nanostructured surfaces have been shown to promote condensation heat transfer, the successful implementation of these coatings relies on the development of scalable manufacturing strategies as well as continued research into the fundamental physical mechanisms of enhancement. This work demonstrates the fabrication and characterization of superhydrophobic coatings using a simple scalable nanofabrication technique based on self-assembly of the <i>Tobacco mosaic virus</i> (TMV) combined with initiated chemical vapor deposition. TMV biotemplating is compatible with a wide range of surface materials and applicable over large areas and complex geometries without the use of any power or heat. The virus-structured coating...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Recently, micro- or nano- structured surfaces haven been developed to enhance condensation heat tran...
It was recently discovered that condensation growing on a nanostructured superhydrophobic surface ca...
While superhydrophobic nanostructured surfaces have been shown to promote condensation heat transf...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Because of their adjustable wetting characteristics, micro/nanostructured surfaces are attractive fo...
Nanostructured surfaces which manifest superhydrophobic properties during water condensation have a ...
Superhydrophobic surfaces enhance condensation by inhibiting the formation of an insulating liquid l...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Micro/nano-structured superhydrophobic surfaces can enhance dropwise condensation via coalescence-i...
Micro/nano-structured superhydrophobic surfaces can enhance dropwise condensation via coalescence-i...
Design of hierarchical micromorphology represents an important strategy for developing functional su...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Recently, micro- or nano- structured surfaces haven been developed to enhance condensation heat tran...
It was recently discovered that condensation growing on a nanostructured superhydrophobic surface ca...
While superhydrophobic nanostructured surfaces have been shown to promote condensation heat transf...
Nanostructured superhydrophobic surfaces have been actively explored to promote favorable droplet dy...
Because of their adjustable wetting characteristics, micro/nanostructured surfaces are attractive fo...
Nanostructured surfaces which manifest superhydrophobic properties during water condensation have a ...
Superhydrophobic surfaces enhance condensation by inhibiting the formation of an insulating liquid l...
Condensation on superhydrophobic nanostructured surfaces offers new opportunities for enhanced energ...
Micro/nano-structured superhydrophobic surfaces can enhance dropwise condensation via coalescence-i...
Micro/nano-structured superhydrophobic surfaces can enhance dropwise condensation via coalescence-i...
Design of hierarchical micromorphology represents an important strategy for developing functional su...
Water condensation on surfaces is a ubiquitous phase-change process that plays a crucial role in nat...
Water vapor condensation on metallic surfaces is critical to a broad range of applications, ranging ...
Recently, micro- or nano- structured surfaces haven been developed to enhance condensation heat tran...
It was recently discovered that condensation growing on a nanostructured superhydrophobic surface ca...