<p>Basic principles of capillary-induced adhesion and roughness-enhanced hydrophobicity are utilized to design three superhydrophobic porous-nanostructure models whose adhesion forces ranged from strong to weak. The design idea is well supported by experimental results, which indicated that adhesive forces may be tailored by modifying structural morphologies to manipulate solid-liquid contact behavior and air-pocket composition in open or sealed systems. </p
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
Biomimetic surfaces with various extents of liquid adhesion intensely appeal to many researchers due...
Biomimetic surfaces with various extents of liquid adhesion intensely appeal to many researchers due...
Super hydrophobic surfaces are the surfaces that do not allow the droplets of liquid to spread and w...
Biomimetic surfaces with various extents of liquid adhesion intensely appeal to many researchers due...
Here we demonstrate high water pinning nanostructures and trapping of water droplets onto surfaces v...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
The self-propelling ability toward achieving more efficient dropwise condensation intensively appeal...
Biomimetic surfaces with various extents of liquid adhesion intensely appeal to many researchers due...
Biomimetic surfaces with various extents of liquid adhesion intensely appeal to many researchers due...
Super hydrophobic surfaces are the surfaces that do not allow the droplets of liquid to spread and w...
Biomimetic surfaces with various extents of liquid adhesion intensely appeal to many researchers due...
Here we demonstrate high water pinning nanostructures and trapping of water droplets onto surfaces v...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...
We describe a new scalable method to fabricate large-area hybrid superhydrophobic surfaces with sele...