Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple, facile, time-saving, wet chemical route. ZnO nanopowders with average particle size of 14 nm were synthesized by a low temperature solution combustion method. Powder X-ray diffraction results confirm that the nanopowders exhibit hexagonal wurtzite structure and belong to space group P63mc. Field emission scanning electron micrographs reveal that the nanoparticles are connected to each other to make large network systems consisting of hierarchical structure. The as formed ZnO coating exhibits wetting behaviour with Water Contact Angle (WCA) of ∼108◦, however on modification with polydimethylsiloxane (PDMS), it transforms to superhydrophobi...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
Nanostructured superhydrophobic ZnO films have been fabricated on aluminum surface by a simple and c...
In this present work, a superhydrophobic glass surface comprising zinc oxide nanotriangles (ZnO-nt) ...
Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple,\ud ...
A superhydrophobic surface has many advantages in micro/nanomechanical applications, such as low adh...
Superhydrophobic coatings with a static water contact angle (WCA) > 150° were prepared by modifying ...
Fabrication of superhydrophobic surfaces has attracted much interest in the past decade. The fabrica...
.\ud The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic sur...
MasterSurface-wetting behaviors have recently attracted significant attention due to their potential...
In this paper a simple and low-cost approach for the elaboration of a superhydrophobic nanocomposite...
Research efforts have intensified on developing superhydrophobic ZnO nanoparticle-based surfaces as ...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
In recent years, surfaces with superhydrophobicity have attracted immense interest in fundamental re...
Zinc oxide (ZnO) surfaces with controllable structures (i.e, microstructure, nanostructure, and micr...
Among the methods to create superhydrophobic surfaces by wet chemistry, one of the strategies consis...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
Nanostructured superhydrophobic ZnO films have been fabricated on aluminum surface by a simple and c...
In this present work, a superhydrophobic glass surface comprising zinc oxide nanotriangles (ZnO-nt) ...
Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple,\ud ...
A superhydrophobic surface has many advantages in micro/nanomechanical applications, such as low adh...
Superhydrophobic coatings with a static water contact angle (WCA) > 150° were prepared by modifying ...
Fabrication of superhydrophobic surfaces has attracted much interest in the past decade. The fabrica...
.\ud The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic sur...
MasterSurface-wetting behaviors have recently attracted significant attention due to their potential...
In this paper a simple and low-cost approach for the elaboration of a superhydrophobic nanocomposite...
Research efforts have intensified on developing superhydrophobic ZnO nanoparticle-based surfaces as ...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
In recent years, surfaces with superhydrophobicity have attracted immense interest in fundamental re...
Zinc oxide (ZnO) surfaces with controllable structures (i.e, microstructure, nanostructure, and micr...
Among the methods to create superhydrophobic surfaces by wet chemistry, one of the strategies consis...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
Nanostructured superhydrophobic ZnO films have been fabricated on aluminum surface by a simple and c...
In this present work, a superhydrophobic glass surface comprising zinc oxide nanotriangles (ZnO-nt) ...