Fabrication of superhydrophobic surfaces has attracted much interest in the past decade. The fabrication methods that have been studied are chemical vapour deposition, the sol-gel method, etching technique, electrochemical deposition, the layer-by-layer deposition, and so on. Simple and inexpensive methods for manufacturing environmentally stable superhydrophobic surfaces have also been proposed lately. However, work referring to the influence of special structures on the wettability, such as hierarchical ZnO nanostructures, is rare.This study presents a simple and reproducible method to fabricate a superhydrophobic surface with micro-scale roughness based on zinc oxide (ZnO) hierarchical structure, which is grown by the hydrothermal method...
Superhydrophobic and superhydrophilic surfaces have been extensively investigated due to their impor...
A simple and cost-effective successive ionic layer adsorption and reaction (SILAR) method was adopte...
Zinc oxide-based superhydrophobic surfaces were fabricated on aluminium oxide-seeded glass substrate...
A superhydrophobic surface has many advantages in micro/nanomechanical applications, such as low adh...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
Nanostructured superhydrophobic ZnO films have been fabricated on aluminum surface by a simple and c...
Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple,\ud ...
MasterSurface-wetting behaviors have recently attracted significant attention due to their potential...
In this paper, we innovatively propose a facile and controllable way to prepare a superhydrophobic Z...
.\ud The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic sur...
Multifunctional superhydrophobic surfaces based on photocatalytic material, ZnO have generated signi...
Zinc oxide (ZnO) surfaces with controllable structures (i.e, microstructure, nanostructure, and micr...
BACKGROUND: After comprehensive study of various superhydrophobic phenomena in nature, it is no long...
In recent years, surfaces with superhydrophobicity have attracted immense interest in fundamental re...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
Superhydrophobic and superhydrophilic surfaces have been extensively investigated due to their impor...
A simple and cost-effective successive ionic layer adsorption and reaction (SILAR) method was adopte...
Zinc oxide-based superhydrophobic surfaces were fabricated on aluminium oxide-seeded glass substrate...
A superhydrophobic surface has many advantages in micro/nanomechanical applications, such as low adh...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
Nanostructured superhydrophobic ZnO films have been fabricated on aluminum surface by a simple and c...
Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple,\ud ...
MasterSurface-wetting behaviors have recently attracted significant attention due to their potential...
In this paper, we innovatively propose a facile and controllable way to prepare a superhydrophobic Z...
.\ud The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic sur...
Multifunctional superhydrophobic surfaces based on photocatalytic material, ZnO have generated signi...
Zinc oxide (ZnO) surfaces with controllable structures (i.e, microstructure, nanostructure, and micr...
BACKGROUND: After comprehensive study of various superhydrophobic phenomena in nature, it is no long...
In recent years, surfaces with superhydrophobicity have attracted immense interest in fundamental re...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
Superhydrophobic and superhydrophilic surfaces have been extensively investigated due to their impor...
A simple and cost-effective successive ionic layer adsorption and reaction (SILAR) method was adopte...
Zinc oxide-based superhydrophobic surfaces were fabricated on aluminium oxide-seeded glass substrate...