Self-cleaning materials have gained considerable attention for both their unique properties and practical applications in energy and environmental areas. Recent examples of many TiO2-derived materials have been illustrated to understand the fundamental principles of self-cleaning hydrophilic and hydrophobic surfaces. Various models including those proposed by Wenzel, Cassie-Baxter and Miwa-Hashimoto are discussed to explain the mechanism of self-cleaning. Examples of semiconductor surfaces exhibiting the simultaneous occurrence of superhydrophilic and superhydrophobic domains on the same surface are illustrated, which can have various advanced applications in microfluidics, printing, photovoltaic, biomedical devices, anti-bacterial surfaces...
This chapter presents the use of a commercial micro-sized TiO2 powder as an alternative to the tradi...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
Starting from second half of last century, nanostructured semiconductors have had a crucial function...
In this chapter, we have focused on the use of self-cleaning coating or surfaces which have more con...
In recent years , the increased environmental awareness of public opinion and legislators has prompt...
Titanium dioxide (TiO2) and hydrophobic of TiO2/PDMS (PDMS = polydimethylsiloxane) have been prepare...
The tailoring of materials wettability has been the topic of numerous researches [1], thanks to its ...
Titanium dioxide has become the ‘gold standard’ in photocatalytic hydrophilic coatings in self clean...
Self-cleaning and anti-fogging technology is already used in a variety of the products today, among ...
Trabajo presentado en la 6th European Conference on Environmental Applications of Advanced Oxidation...
Super hydrophobicity which is a crucial and important state of the anti-wetting surface is getting m...
One of the technologies that are being develop for self cleaning applications is to utilize TiO2 pho...
One of the technologies that are being develop for self cleaning applications is to utilize TiO2 pho...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
This chapter presents the use of a commercial micro-sized TiO2 powder as an alternative to the tradi...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
Starting from second half of last century, nanostructured semiconductors have had a crucial function...
In this chapter, we have focused on the use of self-cleaning coating or surfaces which have more con...
In recent years , the increased environmental awareness of public opinion and legislators has prompt...
Titanium dioxide (TiO2) and hydrophobic of TiO2/PDMS (PDMS = polydimethylsiloxane) have been prepare...
The tailoring of materials wettability has been the topic of numerous researches [1], thanks to its ...
Titanium dioxide has become the ‘gold standard’ in photocatalytic hydrophilic coatings in self clean...
Self-cleaning and anti-fogging technology is already used in a variety of the products today, among ...
Trabajo presentado en la 6th European Conference on Environmental Applications of Advanced Oxidation...
Super hydrophobicity which is a crucial and important state of the anti-wetting surface is getting m...
One of the technologies that are being develop for self cleaning applications is to utilize TiO2 pho...
One of the technologies that are being develop for self cleaning applications is to utilize TiO2 pho...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
This chapter presents the use of a commercial micro-sized TiO2 powder as an alternative to the tradi...
International audienceAccessibility to a clean indoor environment is still an important problem in t...
Starting from second half of last century, nanostructured semiconductors have had a crucial function...