In damp environments, indoor building materials are among the main proliferation substrates for microorganisms. Photocatalytic coatings, including nanoparticles of TiO2, could be a way to prevent microbial proliferation or, at least, to significantly reduce the amount of microorganisms that grow on indoor building materials. Previous works involving TiO2 have already shown the inactivation of bacteria by the photocatalysis process. This paper studies the inactivation of Escherichia coli bacteria by photocatalysis involving TiO2 nanoparticles alone or in transparent coatings (varnishes) and investigates different parameters that significantly influence the antibacterial activity. The antibacterial activity of TiO2 was evaluated through two t...
TiO2 in the form of nanocrystals possesses photocatalyst properties leading to excellent capability ...
TiO2 in the form of nanocrystals possesses photocatalyst properties leading to excellent capability ...
The photocatalytic effect of TiO2 has great potential for the disinfection of surfaces. Most studies...
WOS:000209733700016International audienceIn damp environments, indoor building materials are among t...
Use of photocatalytic paint-like coatings may be a way to protect building materials from microbial ...
Use of photocatalytic paint-like coatings may be a way to protect building materials from microbial ...
International audienceUse of photocatalytic paint-like coatings may be a way to protect building mat...
Photocatalytically active titanium dioxide (TiO2) is widely used as a self-cleaning and self-disinf...
When irradiated under near-ultraviolet (UV) light, TiO2 exhibits strong bactericidal activity. The T...
The photocatalytic properties of titanium dioxideare well known and have many applicationsincluding ...
The photocatalytic properties of titanium dioxideare well known and have many applicationsincluding ...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
Despite extensive preventative efforts, the problem of controlling infections associated with biomed...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
Titanium dioxide (TiO2) has been shown to exhibit photocatalytic bactericidal activity. This prelimi...
TiO2 in the form of nanocrystals possesses photocatalyst properties leading to excellent capability ...
TiO2 in the form of nanocrystals possesses photocatalyst properties leading to excellent capability ...
The photocatalytic effect of TiO2 has great potential for the disinfection of surfaces. Most studies...
WOS:000209733700016International audienceIn damp environments, indoor building materials are among t...
Use of photocatalytic paint-like coatings may be a way to protect building materials from microbial ...
Use of photocatalytic paint-like coatings may be a way to protect building materials from microbial ...
International audienceUse of photocatalytic paint-like coatings may be a way to protect building mat...
Photocatalytically active titanium dioxide (TiO2) is widely used as a self-cleaning and self-disinf...
When irradiated under near-ultraviolet (UV) light, TiO2 exhibits strong bactericidal activity. The T...
The photocatalytic properties of titanium dioxideare well known and have many applicationsincluding ...
The photocatalytic properties of titanium dioxideare well known and have many applicationsincluding ...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
Despite extensive preventative efforts, the problem of controlling infections associated with biomed...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
Titanium dioxide (TiO2) has been shown to exhibit photocatalytic bactericidal activity. This prelimi...
TiO2 in the form of nanocrystals possesses photocatalyst properties leading to excellent capability ...
TiO2 in the form of nanocrystals possesses photocatalyst properties leading to excellent capability ...
The photocatalytic effect of TiO2 has great potential for the disinfection of surfaces. Most studies...