The fast reaction of forced hydrolysis of iron(III) nitrate in hypochlorite solution at room temperature, leads to the formation of mainly hematite, α-Fe2O3. Successive ion adsorption and reaction (SILAR) is applied to decorate an electrochemically formed TiO2 nanotube electrode. The anodic photoelectrochemical behavior of pure TiO2-NT’s and modified electrodes are investigated in a sulfate containing solution at pH=9.2. It is shown that such a modification leads to an increase of anodic photoactivity, as well as that at the same current density, the photoelectrochemical cell with a modified electrode operates at a voltage lower by 0.7 V. The band gap and flat band potentials are estimated, and the structure of the band gap and possible cha...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
AbstractIn this study, titanium dioxide nanotube (TNT) were prepared by anodization method. The effe...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
The fast reaction of forced hydrolysis of iron(III) nitrate in hypochlorite solution at room tempera...
Fe2O3–TiO2 materials were obtained by the cathodic electrochemical deposition of Fe on anodic TiO2 a...
In the present work, titanium dioxide thin layers were prepared using anodic oxidation. Different st...
Nanocrystalline hematite particles (alpha-Fe2O3) were electrodeposited on the TiO2 nanotube (TiNT) a...
Since the development of the first dye sensitized solar cell in 1991, this field of research has gro...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
Photoelectrochemical properties of self-organized TiO(2) nanotubes formed by electrochemical anodiza...
Photoelectrochemical properties of self-organized TiO(2) nanotubes formed by electrochemical anodiza...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
AbstractIn this study, titanium dioxide nanotube (TNT) were prepared by anodization method. The effe...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
The fast reaction of forced hydrolysis of iron(III) nitrate in hypochlorite solution at room tempera...
Fe2O3–TiO2 materials were obtained by the cathodic electrochemical deposition of Fe on anodic TiO2 a...
In the present work, titanium dioxide thin layers were prepared using anodic oxidation. Different st...
Nanocrystalline hematite particles (alpha-Fe2O3) were electrodeposited on the TiO2 nanotube (TiNT) a...
Since the development of the first dye sensitized solar cell in 1991, this field of research has gro...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
Photoelectrochemical properties of self-organized TiO(2) nanotubes formed by electrochemical anodiza...
Photoelectrochemical properties of self-organized TiO(2) nanotubes formed by electrochemical anodiza...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
TiO2 under UV light generates charge carriers (electrons and holes) that take part in the process of...
AbstractIn this study, titanium dioxide nanotube (TNT) were prepared by anodization method. The effe...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...