A brief review of the findings of a range of studies aimed at describing the influence of the N-doping of TiO2 thin films and particles on possible visible light induced photoactivity is presented. By way of a new approach to the direct growth of N-doped TiO2 thin films, the physical and photochemical effects of the addition of ammonia during atmospheric chemical vapour deposition (CVD) growth of TiO2 are described. It is found that the addition of ammonia to the CVD reactive gas mixture causes a dramatic change in film morphology and a reduction in growth rates. In addition, it is found that although we have clear evidence for the incorporation of ¿Ò-substitutional N atoms within the growing film, there is no evidence of any appreciable ...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
In this paper we investigate the possibility of incorporating nitrogen into amorphous, photocatalyti...
Doping nitrogen within TiO2 is an effective way to enhance visible light photocatalysis due to a dir...
A brief review of the findings of a range of studies aimed at describing the influence of the N-dopi...
A brief review of the findings of a range of studies aimed at describing the influence of the N-dopi...
AbstractAtmospheric-pressure chemical vapour deposition (APCVD) was used to produce a series of nitr...
AbstractNitrogen-doped titania (NTiO2) thin films were synthesized using atmospheric-pressure chemic...
Photocatalytically active, N-doped TiO2 thin films were prepared by low pressure metalorganic chemic...
The influence of deposition and annealing parameters on optical, structural and photocatalytic prope...
AbstractAtmospheric-pressure chemical vapour deposition (APCVD) was used to produce a series of nitr...
AbstractNitrogen-doped titania (NTiO2) thin films were synthesized using atmospheric-pressure chemic...
N-doped TiO2 thin films have been prepared by reactive RF magnetron sputtering at different pressure...
International audienceN-doped TiO2 thin films have been prepared by reactive RF magnetron sputtering...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
In this paper we investigate the possibility of incorporating nitrogen into amorphous, photocatalyti...
Doping nitrogen within TiO2 is an effective way to enhance visible light photocatalysis due to a dir...
A brief review of the findings of a range of studies aimed at describing the influence of the N-dopi...
A brief review of the findings of a range of studies aimed at describing the influence of the N-dopi...
AbstractAtmospheric-pressure chemical vapour deposition (APCVD) was used to produce a series of nitr...
AbstractNitrogen-doped titania (NTiO2) thin films were synthesized using atmospheric-pressure chemic...
Photocatalytically active, N-doped TiO2 thin films were prepared by low pressure metalorganic chemic...
The influence of deposition and annealing parameters on optical, structural and photocatalytic prope...
AbstractAtmospheric-pressure chemical vapour deposition (APCVD) was used to produce a series of nitr...
AbstractNitrogen-doped titania (NTiO2) thin films were synthesized using atmospheric-pressure chemic...
N-doped TiO2 thin films have been prepared by reactive RF magnetron sputtering at different pressure...
International audienceN-doped TiO2 thin films have been prepared by reactive RF magnetron sputtering...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
Atmospheric pressure chemical vapour deposition (APCVD) of N-doped titania thin films has been achie...
In this paper we investigate the possibility of incorporating nitrogen into amorphous, photocatalyti...
Doping nitrogen within TiO2 is an effective way to enhance visible light photocatalysis due to a dir...