International audienceThe present study deals with the creation of nano-rough surfaces with stable and controlled high hydrophobicity. These surfaces were obtained by combining the ion track etching technique with a simple functionalization by grafting perfluoroctyltrichlorosilane (PFOTS) molecules. Surface morphology was investigated by AFM observations which evidenced a self-affine fractal structure with a fractal dimension Df ~ 2.6. The study of the wetting properties of these surfaces allowed to elucidate the conditions for observing a high hydrophobicity phenomenon and to predict the contact angle values for surfaces designed at a nanometric scale
Organic-nano-TiO(2) hybrids are successfully employed in different fields, from biomaterials to self...
In this work, we describe self-assembled surfaces with a peculiar multiscale organization, from the ...
A novel superhydrophobic film simulating the structure of a lotus leaf was prepared using triethoxyv...
International audienceThe present study deals with the creation of nano-rough surfaces with stable a...
The present study deals with the creation of nano-rough surfaces with stable and controlled high hyd...
International audienceWhen deposited on a hydrophobic rough surface, a small water drop looks like a...
Nano porous silicon (NPSi) films were fabricated via a process of Si anodic dissolution. An apparent...
The wetting phenomena related to superhydrophobic and superhydrophilic surfaces have been investigat...
Although there are many viable approaches to induce hydrophobicity, a superhydrophobic surface could...
The paper deals with the fabrication of sol gel-derived superhydrophobic films on glass based on the...
Superhydrophobic surfaces in Wenzel and metastable wetting state were prepared and the conversion of...
The effect of physical roughness at multiple length scales on macro-, micro- and nanowetting behavio...
The formation of appropriate surface patterns on hydrophobic surfaces leads to a general change in t...
Super-hydrophobic films with vinyl-modified silica nanoparticles (V-SiOx-NPs) were successfully prep...
It is still problematic to define a direct relationship between specific properties of a nanostructu...
Organic-nano-TiO(2) hybrids are successfully employed in different fields, from biomaterials to self...
In this work, we describe self-assembled surfaces with a peculiar multiscale organization, from the ...
A novel superhydrophobic film simulating the structure of a lotus leaf was prepared using triethoxyv...
International audienceThe present study deals with the creation of nano-rough surfaces with stable a...
The present study deals with the creation of nano-rough surfaces with stable and controlled high hyd...
International audienceWhen deposited on a hydrophobic rough surface, a small water drop looks like a...
Nano porous silicon (NPSi) films were fabricated via a process of Si anodic dissolution. An apparent...
The wetting phenomena related to superhydrophobic and superhydrophilic surfaces have been investigat...
Although there are many viable approaches to induce hydrophobicity, a superhydrophobic surface could...
The paper deals with the fabrication of sol gel-derived superhydrophobic films on glass based on the...
Superhydrophobic surfaces in Wenzel and metastable wetting state were prepared and the conversion of...
The effect of physical roughness at multiple length scales on macro-, micro- and nanowetting behavio...
The formation of appropriate surface patterns on hydrophobic surfaces leads to a general change in t...
Super-hydrophobic films with vinyl-modified silica nanoparticles (V-SiOx-NPs) were successfully prep...
It is still problematic to define a direct relationship between specific properties of a nanostructu...
Organic-nano-TiO(2) hybrids are successfully employed in different fields, from biomaterials to self...
In this work, we describe self-assembled surfaces with a peculiar multiscale organization, from the ...
A novel superhydrophobic film simulating the structure of a lotus leaf was prepared using triethoxyv...