Superhydrophobic polytetrafluoroethylene films with hierarchical surface roughness were deposited using pulse electron deposition technique. We were able to modulate roughness of the deposited films by controlling the beam energy and hence the electron penetration depth. The films deposited at higher beam energy showed contact angle as high as 166°. The scanning electron and atomic force microscope studies revealed clustered growth and two level sub-micron asperities on films deposited at higher energies. Such dual-scale hierarchical roughness and heterogeneities at the water-surface interface was attributed to the observed contact angle and thus its superhydrophobic nature
Polytetrafluoroethylene (PTFE) film has been deposited on solar selective absorber (SSA) by electron...
A novel superhydrophobic ultra-thin film with contact angle of 166degrees was prepared by stearic ac...
A novel superhydrophobic ultra-thin film with contact angle of 166degrees was prepared by stearic ac...
Superhydrophobic polytetrafluoroethylene films with hierarchical surface roughness were deposited us...
Superhydrophobic polytetrafluoroethylene films with hierarchical surface roughness were deposited us...
Polytetrafluoroethylene (PTFE/Teflon) is an excellent material in applications demanding high therma...
The interfacial properties of solution-processed conjugated polymer films are investigated. Their su...
The present paper describes the process enabling the production of superhydrophobic surfaces by tail...
Polyethylene films grow on a flat silica surface modified by the bis(imino)pyridyl iron(II) catalyst...
Superhydrophobic poly(tetrafluoro-ethylene) (PTFE) like thin films were grown on silicon wafers usin...
Polyethylene films were grown on a flat silica surface modified by the bis(imino)pyridyl iron(II) ca...
The surface morphology and wettability of nanoscale polytetrafluoroethylene-like films deposited onto ...
A rather simple but yet effective way to achieve a superhydrophobic film by extending a Teflon film ...
International audiencePoly(tetrafluoroethylene) (PTFE) materials were exposed to low and high-energy...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
Polytetrafluoroethylene (PTFE) film has been deposited on solar selective absorber (SSA) by electron...
A novel superhydrophobic ultra-thin film with contact angle of 166degrees was prepared by stearic ac...
A novel superhydrophobic ultra-thin film with contact angle of 166degrees was prepared by stearic ac...
Superhydrophobic polytetrafluoroethylene films with hierarchical surface roughness were deposited us...
Superhydrophobic polytetrafluoroethylene films with hierarchical surface roughness were deposited us...
Polytetrafluoroethylene (PTFE/Teflon) is an excellent material in applications demanding high therma...
The interfacial properties of solution-processed conjugated polymer films are investigated. Their su...
The present paper describes the process enabling the production of superhydrophobic surfaces by tail...
Polyethylene films grow on a flat silica surface modified by the bis(imino)pyridyl iron(II) catalyst...
Superhydrophobic poly(tetrafluoro-ethylene) (PTFE) like thin films were grown on silicon wafers usin...
Polyethylene films were grown on a flat silica surface modified by the bis(imino)pyridyl iron(II) ca...
The surface morphology and wettability of nanoscale polytetrafluoroethylene-like films deposited onto ...
A rather simple but yet effective way to achieve a superhydrophobic film by extending a Teflon film ...
International audiencePoly(tetrafluoroethylene) (PTFE) materials were exposed to low and high-energy...
The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by m...
Polytetrafluoroethylene (PTFE) film has been deposited on solar selective absorber (SSA) by electron...
A novel superhydrophobic ultra-thin film with contact angle of 166degrees was prepared by stearic ac...
A novel superhydrophobic ultra-thin film with contact angle of 166degrees was prepared by stearic ac...