In this work, we study the effect of doping depth profile on the photocatalytic and surface properties of TiO(2) films. Two thin film layers of TiO(2) (200 nm) and Co (5 nm), respectively, were deposited by physical evaporation on glass substrate. These films were annealed for 1 s at 100 and 400 A degrees C and the Co layer was removed by chemical etching. Atomic force microscopy (AFM) phase images showed changes in the surface in function of thermal treatment. The grazing-incidence X-ray fluorescence (GIXRF) measurements indicated that the thermal treatment caused migration of Co atoms to below the surface, the depths found were between 19 and 29 nm. The contact angle showed distinct values in function of the doped profile or Co surface co...
TiO(sub 2) layers were deposited by reactive pulse magnetron sputtering at a substrate temperature o...
Carbon-doped titania (C:TiO2) films were prepared by reactive magnetron sputtering using CO2 as a ca...
Carbon-doped titania (C:TiO2) films were prepared by reactive magnetron sputtering using CO2 as a ca...
In this work, we study the effect of doping depth profile on the photocatalytic and surface properti...
In this work the effect of doping concentration and depth profile of Cu atoms on the photocatalytic ...
In this work the effect of doping concentration and depth profile of Cu atoms on the photocatalytic ...
In this work the effect of doping concentration and depth profile of Cu atoms on the photocatalytic ...
TiO2 thin films were deposited on quartz substrates by metal–organic chemical vapor deposition (MOCV...
The type, concentration, and distribution of dopants in TiO2 thin films have a huge impact on their ...
AbstractTiO2 thin films were spin coated on soda-lime-silica glass substrates under identical condit...
In the current study, we analysed the influence of metallic underlayers on carbon-doped TiO2 films f...
Photocatalytic degradation of organic pollutants from wastewater using titanium dioxide is recognize...
In this report, the photocatalytic activity of P25 has been explored and the influence of thermal tr...
Undoped, single doped and codoped TiO2 thin films were fabricated by spin coating of sol-gel solutio...
In this study, the effects of the praseodymium doping and calcination temperature for titania based ...
TiO(sub 2) layers were deposited by reactive pulse magnetron sputtering at a substrate temperature o...
Carbon-doped titania (C:TiO2) films were prepared by reactive magnetron sputtering using CO2 as a ca...
Carbon-doped titania (C:TiO2) films were prepared by reactive magnetron sputtering using CO2 as a ca...
In this work, we study the effect of doping depth profile on the photocatalytic and surface properti...
In this work the effect of doping concentration and depth profile of Cu atoms on the photocatalytic ...
In this work the effect of doping concentration and depth profile of Cu atoms on the photocatalytic ...
In this work the effect of doping concentration and depth profile of Cu atoms on the photocatalytic ...
TiO2 thin films were deposited on quartz substrates by metal–organic chemical vapor deposition (MOCV...
The type, concentration, and distribution of dopants in TiO2 thin films have a huge impact on their ...
AbstractTiO2 thin films were spin coated on soda-lime-silica glass substrates under identical condit...
In the current study, we analysed the influence of metallic underlayers on carbon-doped TiO2 films f...
Photocatalytic degradation of organic pollutants from wastewater using titanium dioxide is recognize...
In this report, the photocatalytic activity of P25 has been explored and the influence of thermal tr...
Undoped, single doped and codoped TiO2 thin films were fabricated by spin coating of sol-gel solutio...
In this study, the effects of the praseodymium doping and calcination temperature for titania based ...
TiO(sub 2) layers were deposited by reactive pulse magnetron sputtering at a substrate temperature o...
Carbon-doped titania (C:TiO2) films were prepared by reactive magnetron sputtering using CO2 as a ca...
Carbon-doped titania (C:TiO2) films were prepared by reactive magnetron sputtering using CO2 as a ca...