Under pulsed laser UV irradiation, thin-film coatings made of close-packed TiO2 nanorods individually coated with surfactants can exhibit a temporary increase in their degree of surface hydroxylation without any apparent photocatalytic removal of the capping molecules. This mechanism provides a basis for achieving light-driven conversion from a highly hydrophobic to a highly hydrophilic, metastable state, followed by extremely slow recovery of the original conditions under dark ambient environment. A deeper insight into the wetting dynamics is gained by time-dependent water contact-angle and infrared spectroscopy monitoring of the film properties under different post-UV storage conditions. Our study reveals that, for reversible switchabilit...
AbstractAnatase nanocrystal TiO2 thin films with superhydrophilicity were fabricated by reactive mag...
Patterned polymeric coatings enriched with colloidal TiO2 nanorods and prepared by photopolymerizati...
The present study explored the effects of several factors (wetting, light intensity, spectral variat...
We demonstrate the light-induced, reversible wettability of homogeneous nanocrystal-based, thin-film...
We present a novel approach to cover different substrates with thin light-sensitive layers that cons...
TiO2 is known to change its wetting properties under UV light. In this thesis, the photoinduced hyd...
Controllable wettability is important for a wide range of applications, including intelligent switch...
The water contact angle (WCA) of nanocrystalline TiO2 films was adjusted by fluoroalkylsilane (FAS) ...
Abstract A hierarchical structural surface of TiO2 film with reversibly light-switchable wettability...
Transparent TiO2 thin films were prepared on quartz substrates via a reverse micelle, sol-gel, spin-...
Here, an approach to realize ‘‘smart’’ solid substrates that can convert their wetting behavior betw...
The significant increment of TiO2 surface wettability upon UV irradiation makes it a promising compo...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO2 n...
To achieve self-cleaning at a low maintenance cost, we investigated the possibility of obtaining a s...
Nanocrystalline TiO2 thin films have been successfully synthesized by controlled precipitation route...
AbstractAnatase nanocrystal TiO2 thin films with superhydrophilicity were fabricated by reactive mag...
Patterned polymeric coatings enriched with colloidal TiO2 nanorods and prepared by photopolymerizati...
The present study explored the effects of several factors (wetting, light intensity, spectral variat...
We demonstrate the light-induced, reversible wettability of homogeneous nanocrystal-based, thin-film...
We present a novel approach to cover different substrates with thin light-sensitive layers that cons...
TiO2 is known to change its wetting properties under UV light. In this thesis, the photoinduced hyd...
Controllable wettability is important for a wide range of applications, including intelligent switch...
The water contact angle (WCA) of nanocrystalline TiO2 films was adjusted by fluoroalkylsilane (FAS) ...
Abstract A hierarchical structural surface of TiO2 film with reversibly light-switchable wettability...
Transparent TiO2 thin films were prepared on quartz substrates via a reverse micelle, sol-gel, spin-...
Here, an approach to realize ‘‘smart’’ solid substrates that can convert their wetting behavior betw...
The significant increment of TiO2 surface wettability upon UV irradiation makes it a promising compo...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO2 n...
To achieve self-cleaning at a low maintenance cost, we investigated the possibility of obtaining a s...
Nanocrystalline TiO2 thin films have been successfully synthesized by controlled precipitation route...
AbstractAnatase nanocrystal TiO2 thin films with superhydrophilicity were fabricated by reactive mag...
Patterned polymeric coatings enriched with colloidal TiO2 nanorods and prepared by photopolymerizati...
The present study explored the effects of several factors (wetting, light intensity, spectral variat...