International audienceControlling the water adhesion is extremely important for various applications such as for water harvesting. Here, superhydrophobic (low adhesion) and parahydrophobic (high adhesion) substrates are both obtained from hydrophilic polymers. We show in the work that a judicious choice in the monomer structure used for electropolymerization can lead to these two properties. Using a phenyl group, parahydrophobic properties are reached due to the formation of nanofilaments. By contrast, using a naphthalene or a biphenyl group, superhydrophobic properties are obtained due the formation of both micro- and nanostructures
International audienceHighly hydrophobic properties with water adhesion (parahydrophobic properties)...
International audienceHere, we show the possibility to change superhydrophobic properties from soft ...
International audienceThis work concerns new superhydrophobic surfaces, generated by replacing long ...
International audienceControlling the water adhesion is extremely important for various applications...
International audienceControlling the water adhesion is fundamental for various applications such as...
International audienceWe report the synthesis of original 3,4-ethylenedioxythiophene (ProDOT) deriva...
Special Issue: Surface Design and EngineeringInternational audienceHere, we report the formation of...
International audienceIn this study, various alkyl 3,4-ethylenedioxythiophene derivatives (methyl to...
Special Issue: Self Cleaning Coatings (Omniphobic, Superhydrophobic, Superhydrophilic, Oleophobic)In...
International audienceIn the aim to produce superhydrophobic surface properties, the nanofibers are ...
International audienceIn nature, several plants and insects, such as the Rosa montana petals or the ...
The control of the surface wettability of materials is very important for many applications. Since t...
Abstract Superhydrophobic polymers are particularly attractive materials, as they combine low cost, ...
Here, we control the surface hydrophobicity and the adhesion of water droplets by electrodeposition ...
Controlling wettability of a solid surface is important in many practical applications. This propert...
International audienceHighly hydrophobic properties with water adhesion (parahydrophobic properties)...
International audienceHere, we show the possibility to change superhydrophobic properties from soft ...
International audienceThis work concerns new superhydrophobic surfaces, generated by replacing long ...
International audienceControlling the water adhesion is extremely important for various applications...
International audienceControlling the water adhesion is fundamental for various applications such as...
International audienceWe report the synthesis of original 3,4-ethylenedioxythiophene (ProDOT) deriva...
Special Issue: Surface Design and EngineeringInternational audienceHere, we report the formation of...
International audienceIn this study, various alkyl 3,4-ethylenedioxythiophene derivatives (methyl to...
Special Issue: Self Cleaning Coatings (Omniphobic, Superhydrophobic, Superhydrophilic, Oleophobic)In...
International audienceIn the aim to produce superhydrophobic surface properties, the nanofibers are ...
International audienceIn nature, several plants and insects, such as the Rosa montana petals or the ...
The control of the surface wettability of materials is very important for many applications. Since t...
Abstract Superhydrophobic polymers are particularly attractive materials, as they combine low cost, ...
Here, we control the surface hydrophobicity and the adhesion of water droplets by electrodeposition ...
Controlling wettability of a solid surface is important in many practical applications. This propert...
International audienceHighly hydrophobic properties with water adhesion (parahydrophobic properties)...
International audienceHere, we show the possibility to change superhydrophobic properties from soft ...
International audienceThis work concerns new superhydrophobic surfaces, generated by replacing long ...