Fabrication of superhydrophobic materials using incumbent techniques involves several processing steps and is therefore either quite complex, not scalable, or often both. Here, the development of superhydrophobic surface-patterned polymer–TiO2 composite materials using a simple, single-step photopolymerization-based approach is reported. The synergistic combination of concurrent, periodic bump-like pattern formation created using irradiation through a photomask and photopolymerization-induced nanoparticle (NP) phase separation enables the development of surface textures with dual-scale roughness (micrometer-sized bumps and NPs) that demonstrate high water contact angles, low roll-off angles, and desirable postprocessability such as flexibil...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO2 n...
MasterWe simply fabricated superhydrophobic surfaces showing cost-effective, transparency and high m...
Photoreactive composite thin layers with tunable wetting properties from superhydrophilic to superhy...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO 2 ...
Multifunctional superhydrophobic nanocomposite surfaces based on photocatalytic materials, such as f...
Multifunctional superhydrophobic nanocomposite surfaces based on photocatalytic materials, such as f...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO2 n...
MasterWe simply fabricated superhydrophobic surfaces showing cost-effective, transparency and high m...
Photoreactive composite thin layers with tunable wetting properties from superhydrophilic to superhy...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
Fabrication of superhydrophobic materials using incumbent techniques involves several processing ste...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO 2 ...
Multifunctional superhydrophobic nanocomposite surfaces based on photocatalytic materials, such as f...
Multifunctional superhydrophobic nanocomposite surfaces based on photocatalytic materials, such as f...
A facile method to produce very hydrophobic surface was developed simply using the mixture of TiO2 n...
MasterWe simply fabricated superhydrophobic surfaces showing cost-effective, transparency and high m...
Photoreactive composite thin layers with tunable wetting properties from superhydrophilic to superhy...