[EN] Titanium dioxide is the most widely used photocatalyst for hydrogen production from water. Its main limitation consists in the lack of photocatalytic activity under visible light irradiation. One strategy to overcome this problem consists in using as photocatalyst Ti3+-self-doped TiO2 that presents an absorption in the visible range. In this context, we report the synthesis, characterization as semiconductor and photocatalytic activity under visible light or solar light irradiation of open-framework V-doped, mixed-valence titanium phosphate. These materials are characterized by an intense absorption spanning all the visible wavelength range caused by the presence of Ti3+ centers in equimolar ratio respect Ti4+. This long wavelength abs...
Hydrogen gas is a clean burning fuel that has potential applications in stationary and mobile power ...
Increasing visible light absorption of classic wide-bandgap photocatalysts like TiO2 has long been p...
Solar light is inexhaustible, and therefore to take advantage of this energy it is necessary to deve...
[EN] Titanium dioxide is the most widely used photocatalyst for hydrogen production from water. Its ...
The preparation of visible light driven photocatalysts for photocatalytic water splitting has been a...
[EN] Photocatalytic H2 production has emerged as one of the most clean and promising renewable energ...
series of 20 commercial titanium dioxide samples, including Evonik P-25, Millenium, Huntsman,Crenox,...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Photocatalytic water splitting is one of the most important renewable paths and a reliable hydrogen ...
The present article describes the hydrogen production from an aqueous medium over amino-functionaliz...
The remarkable achievement by Fujishima and Honda (1972) in the photo-electrochemical water splittin...
N-doped mesoporous titania was synthesized by templating method. Three different types of photocata...
Amorphous titania-based photocatalysts are synthesized using a facile, UV-light mediated method and ...
Amorphous titania-based photocatalysts are synthesized using a facile, UV-light mediated method and ...
Hydrogen gas is a clean burning fuel that has potential applications in stationary and mobile power ...
Increasing visible light absorption of classic wide-bandgap photocatalysts like TiO2 has long been p...
Solar light is inexhaustible, and therefore to take advantage of this energy it is necessary to deve...
[EN] Titanium dioxide is the most widely used photocatalyst for hydrogen production from water. Its ...
The preparation of visible light driven photocatalysts for photocatalytic water splitting has been a...
[EN] Photocatalytic H2 production has emerged as one of the most clean and promising renewable energ...
series of 20 commercial titanium dioxide samples, including Evonik P-25, Millenium, Huntsman,Crenox,...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Photocatalytic water splitting is one of the most important renewable paths and a reliable hydrogen ...
The present article describes the hydrogen production from an aqueous medium over amino-functionaliz...
The remarkable achievement by Fujishima and Honda (1972) in the photo-electrochemical water splittin...
N-doped mesoporous titania was synthesized by templating method. Three different types of photocata...
Amorphous titania-based photocatalysts are synthesized using a facile, UV-light mediated method and ...
Amorphous titania-based photocatalysts are synthesized using a facile, UV-light mediated method and ...
Hydrogen gas is a clean burning fuel that has potential applications in stationary and mobile power ...
Increasing visible light absorption of classic wide-bandgap photocatalysts like TiO2 has long been p...
Solar light is inexhaustible, and therefore to take advantage of this energy it is necessary to deve...