Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from plant such as the Sacred Lotus (Nulembo nucifera), where the micro-scale papillae epidermal cells on the surfaces of the leaves are covered with nano-scale epicuticular wax crystalloids. The combination of the surface roughness and the hydrophobic wax coating produces a superhydrophobic wetting state on the leaves allowing them to self-clean and easily shed water. Here a simple scale-up carbon nanoparticle spray coating is presented that mimics the surface of the Sacred Lotus leaves and can be applied to a wide variety of materials, complex structures, and flexible substrates, rendering them superhydrophobic, with contact angles above 160°. The...
The investigations of superhydrophobicity and self-cleaning surfaces have been given a lot of attent...
Surface wettability is known to have a profound influence in both academic study and industrial appl...
Surface wettability is known to have a profound influence in both academic study and industrial appl...
Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from pla...
Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from pla...
Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from pla...
For many years, people have been attracted by the self-cleaning property of the lotus leaf, and drea...
For many years, people have been attracted by the self-cleaning property of the lotus leaf, and drea...
Lotus-inspired superhydrophobic coatings are usually mechanically weak and lack durability, this hin...
For many years, people have been attracted by the self-cleaning property of the lotus leaf, and drea...
AbstractSo far, scientists have successfully mimicked superhydrophobicity based on careful observati...
Inspired by the multifunctionality of biological surfaces necessary for the survival of an organism ...
Wettability of a solid surface by a liquid plays an important role in several phenomena and applicat...
| openaire: EC/H2020/725513/EU//SuperRepelA fundamental challenge in artificially structured/ chemic...
| openaire: EC/H2020/725513/EU//SuperRepelA fundamental challenge in artificially structured/ chemic...
The investigations of superhydrophobicity and self-cleaning surfaces have been given a lot of attent...
Surface wettability is known to have a profound influence in both academic study and industrial appl...
Surface wettability is known to have a profound influence in both academic study and industrial appl...
Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from pla...
Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from pla...
Much of the inspiration for the creation of superhydrophobic surfaces has come from nature, from pla...
For many years, people have been attracted by the self-cleaning property of the lotus leaf, and drea...
For many years, people have been attracted by the self-cleaning property of the lotus leaf, and drea...
Lotus-inspired superhydrophobic coatings are usually mechanically weak and lack durability, this hin...
For many years, people have been attracted by the self-cleaning property of the lotus leaf, and drea...
AbstractSo far, scientists have successfully mimicked superhydrophobicity based on careful observati...
Inspired by the multifunctionality of biological surfaces necessary for the survival of an organism ...
Wettability of a solid surface by a liquid plays an important role in several phenomena and applicat...
| openaire: EC/H2020/725513/EU//SuperRepelA fundamental challenge in artificially structured/ chemic...
| openaire: EC/H2020/725513/EU//SuperRepelA fundamental challenge in artificially structured/ chemic...
The investigations of superhydrophobicity and self-cleaning surfaces have been given a lot of attent...
Surface wettability is known to have a profound influence in both academic study and industrial appl...
Surface wettability is known to have a profound influence in both academic study and industrial appl...