The ability of modifying the surface properties plays a crucial role in nanostructures where the high surface-to-volume ratio is often exploited for a various range of applications. In this work, the anisotropic dissolution of ZnO nanowires (NWs) in water was analyzed, and a reversible method for the modification of the surface wetting properties based on electron beam irradiation was investigated. Using this approach, it was possible to selectively modify the wetting properties of single-crystalline ZnO NWs from hydrophilic to hydrophobic, preventing the degradation of these nanostructures when exposed to water. As deeply investigated by means of spectroscopic analyses, the switching mechanism of wettability was ascribed to the modificatio...
The growth of ZnO nanorods on a flat substrate containing c-irradiated seeds and their ability to ph...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...
The ability of modifying the surface properties plays a crucial role in nanostructures where the hig...
The ability of modifying the surface properties plays a crucial role in nanostructures where the hig...
Tailoring the surface properties by varying the chemistry and roughness could be of interest for sel...
ZnO nanowires were subjected to convergent electron beam irradiation in a 300 kV transmission electr...
In-situ electron beam induced microstructural transformation experiments, leading to porosity in nan...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
We report a facile wet-chemical route for the fabrication of a superhydrophobic ZnO nanowire surface...
This study proposes a way to control the wettability of zinc oxide nanowires (NWs) by properly selec...
ZnO is a wide bandgap semiconductor that has many potential applications including solar cell electr...
Metal oxide semiconductors such as ZnO have attracted much scientific attention due their material a...
Surface modification via adsorbates is significant for property prediction in nanostructures where s...
Metal oxide semiconductor materials, designed to be applied in photocatalytic systems for water puri...
The growth of ZnO nanorods on a flat substrate containing c-irradiated seeds and their ability to ph...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...
The ability of modifying the surface properties plays a crucial role in nanostructures where the hig...
The ability of modifying the surface properties plays a crucial role in nanostructures where the hig...
Tailoring the surface properties by varying the chemistry and roughness could be of interest for sel...
ZnO nanowires were subjected to convergent electron beam irradiation in a 300 kV transmission electr...
In-situ electron beam induced microstructural transformation experiments, leading to porosity in nan...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
We report a facile wet-chemical route for the fabrication of a superhydrophobic ZnO nanowire surface...
This study proposes a way to control the wettability of zinc oxide nanowires (NWs) by properly selec...
ZnO is a wide bandgap semiconductor that has many potential applications including solar cell electr...
Metal oxide semiconductors such as ZnO have attracted much scientific attention due their material a...
Surface modification via adsorbates is significant for property prediction in nanostructures where s...
Metal oxide semiconductor materials, designed to be applied in photocatalytic systems for water puri...
The growth of ZnO nanorods on a flat substrate containing c-irradiated seeds and their ability to ph...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...