Highly conducting, optically transparent Ta-doped TiO2 (anatase) thin films are grown on ordinary soda-lime glass substrates by pulsed-laser deposition. They exhibit quasi-reversible cyclic voltammograms of Fe(CN)63−/4− and dimethylviologen redox couples, mimicking the electrochemical activity of F-doped SnO2 (FTO). Hence, our Ta-doped titania films can prospectively replace FTO, e.g. in homo-junction dye-sensitized and perovskite solar cells. However, these films are idle for the Ru(bpy)32+ oxidation, which is attributed to the space-charge barrier. The flatband potential of our Ta-doped TiO2 is comparable to that of an undoped reference film and/or of the pristine anatase single-crystal electrode. Our films show photoelectrochemical activ...
The development of transparent conducting oxides (TCOs) has led to the evolution of a variety of opt...
Tantalum (Ta)-doped titanium oxide (TiO2) thin films are grown by plasma enhanced atomic layer depos...
Doping titania by both metals and non-metals has attracted considerable attention due to a red-shift...
Highly conducting, optically transparent Ta-doped TiO2 (anatase) thin films are grown on ordinary so...
We present a detailed study on polycrystalline transparent conducting Ta-doped TiO2 films, obtained ...
International audienceThe development of low-dimensional transparent conducting systems is nowadays ...
The development of low-dimensional transparent conducting systems is nowadays gaining interest in vi...
The development of low-dimensional transparent conducting systems is nowadays gaining interest in vi...
Interest in titania based materials has grown in recent years owing to the potential application of ...
Titanium dioxide (anatase, rutile) and quasi-amorphous tin dioxide are prepared on F-doped SnO2 in t...
In recent years, titanium dioxide has received ever growing interest, thanks to its promising applic...
The electrochemical and spectroelectrochemical behavior ot TiO2 anatase with a predominant (001) f...
Electrochemical impedance spectroscopy measurements of pulsed laser deposited single crystal anatase...
During recent 10 years, the interest in characterization of colloidal semiconductor films, focused i...
Titanium dioxide (TiO2) of the anatase phase has recently attracted much attention as a novel transp...
The development of transparent conducting oxides (TCOs) has led to the evolution of a variety of opt...
Tantalum (Ta)-doped titanium oxide (TiO2) thin films are grown by plasma enhanced atomic layer depos...
Doping titania by both metals and non-metals has attracted considerable attention due to a red-shift...
Highly conducting, optically transparent Ta-doped TiO2 (anatase) thin films are grown on ordinary so...
We present a detailed study on polycrystalline transparent conducting Ta-doped TiO2 films, obtained ...
International audienceThe development of low-dimensional transparent conducting systems is nowadays ...
The development of low-dimensional transparent conducting systems is nowadays gaining interest in vi...
The development of low-dimensional transparent conducting systems is nowadays gaining interest in vi...
Interest in titania based materials has grown in recent years owing to the potential application of ...
Titanium dioxide (anatase, rutile) and quasi-amorphous tin dioxide are prepared on F-doped SnO2 in t...
In recent years, titanium dioxide has received ever growing interest, thanks to its promising applic...
The electrochemical and spectroelectrochemical behavior ot TiO2 anatase with a predominant (001) f...
Electrochemical impedance spectroscopy measurements of pulsed laser deposited single crystal anatase...
During recent 10 years, the interest in characterization of colloidal semiconductor films, focused i...
Titanium dioxide (TiO2) of the anatase phase has recently attracted much attention as a novel transp...
The development of transparent conducting oxides (TCOs) has led to the evolution of a variety of opt...
Tantalum (Ta)-doped titanium oxide (TiO2) thin films are grown by plasma enhanced atomic layer depos...
Doping titania by both metals and non-metals has attracted considerable attention due to a red-shift...