We report a facile wet-chemical route for the fabrication of a superhydrophobic ZnO nanowire surface modified with fatty acids. A systematic study was performed on the relationship between carbon chain length of fatty acid and wetting states of well-aligned ZnO nanowire arrays. The wettability of the ZnO nanowire array was monotonically converted from hydrophilicity to hydrophobicity by increasing the carbon chain length of the chemisorbed fatty acid. The superhydrophobic surface obtained with stearic acid (SA, C18) showed a maximum water contact angle (CA) of 167 degrees, which decreased gradually under UV illumination, due to UV-enhanced decomposition of SA monolayer. XPS analysis confirmed the photodecomposition of SA molecules through U...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
ZnO is a biocompatible material suitable for biosensors and microfluidic devices. Nanowires of ZnO t...
MasterSurface-wetting behaviors have recently attracted significant attention due to their potential...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
A simple and cost-effective successive ionic layer adsorption and reaction (SILAR) method was adopte...
The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic surface ...
Due to their large surface-area-to-volume ratio as well as their interesting intrinsic optical and e...
This study presents an experimental approach for fabricating super hydrophobic coatings based on a d...
Aligned ZnO nanorod arrays films were grown on LiNbO3 substrates by aqueous growth, and subsequently...
Fabrication of superhydrophobic surfaces has attracted much interest in the past decade. The fabrica...
Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple,\ud ...
Multifunctional superhydrophobic surfaces based on photocatalytic material, ZnO have generated signi...
A facile route is reported for the fabrication of superhydrophobie tungsten oxide (WOx) nanowire sur...
Superhydrophobic and superhydrophilic surfaces have been extensively investigated due to their impor...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
ZnO is a biocompatible material suitable for biosensors and microfluidic devices. Nanowires of ZnO t...
MasterSurface-wetting behaviors have recently attracted significant attention due to their potential...
The wettability control of solid surfaces is important from the aspects of both science and technolo...
A simple and cost-effective successive ionic layer adsorption and reaction (SILAR) method was adopte...
The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic surface ...
Due to their large surface-area-to-volume ratio as well as their interesting intrinsic optical and e...
This study presents an experimental approach for fabricating super hydrophobic coatings based on a d...
Aligned ZnO nanorod arrays films were grown on LiNbO3 substrates by aqueous growth, and subsequently...
Fabrication of superhydrophobic surfaces has attracted much interest in the past decade. The fabrica...
Superhydrophobic surfaces based on ZnO–PDMS nanocomposite coatings are demonstrated by a simple,\ud ...
Multifunctional superhydrophobic surfaces based on photocatalytic material, ZnO have generated signi...
A facile route is reported for the fabrication of superhydrophobie tungsten oxide (WOx) nanowire sur...
Superhydrophobic and superhydrophilic surfaces have been extensively investigated due to their impor...
Due to the intensive demand in the development of superhydrophobic surfaces both in theory and appli...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
ZnO is a biocompatible material suitable for biosensors and microfluidic devices. Nanowires of ZnO t...