Increasing visible light absorption of classic wide-bandgap photocatalysts like TiO2 has long been pursued in order to promote solar energy conversion. Modulating the composition and/or stoichiometry of these photocatalysts is essential to narrow their bandgap for a strong visible-light absorption band. However, the bands obtained so far normally suffer from a low absorbance and/or narrow range. Herein, in contrast to the common tail-like absorption band in hydrogen-free oxygen-deficient TiO2 , an unusual strong absorption band spanning the full spectrum of visible light is achieved in anatase TiO2 by intentionally introducing atomic hydrogen-mediated oxygen vacancies. Combining experimental characterizations with theoretical calculations r...
International audienceManipulating the atomic structure of semiconductors is a fine way to tune thei...
Here, we demonstrate the effect of vacuum hydrogen annealing on TiO2 nanocrystals (H:TiO2) to modify...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...
Previous studies have shown that hydrogen treatment leads to the formation of blue to black TiO_2, w...
The strong band-to-band absorption of photocatalysts spanning the whole visible light region (400-70...
The remarkable achievement by Fujishima and Honda (1972) in the photo-electrochemical water splittin...
Anatase TiO2 presents a large bandgap of 3.2 eV, which inhibits the use of visible light radiation (...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Abstract: Hydrogen produced from water using photocatalysts driven by sunlight is a sustainable way ...
Photocatalytic activity of pure TiO<sub>2</sub> is limited to ultraviolet (UV) light due to the wide...
Hydrogen gas is a clean burning fuel that has potential applications in stationary and mobile power ...
TiO2 anatase plays a central role in energy and environmental research. A major bottleneck toward de...
The strong band-to-band absorption of photocatalysts spanning the whole visible-light region (400–70...
There is an increasing level of interest in the use of black TiO2 prepared by thermal hydrogen treat...
TiO<sub>2</sub> anatase plays a central role in energy and environmental research. A major bottlenec...
International audienceManipulating the atomic structure of semiconductors is a fine way to tune thei...
Here, we demonstrate the effect of vacuum hydrogen annealing on TiO2 nanocrystals (H:TiO2) to modify...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...
Previous studies have shown that hydrogen treatment leads to the formation of blue to black TiO_2, w...
The strong band-to-band absorption of photocatalysts spanning the whole visible light region (400-70...
The remarkable achievement by Fujishima and Honda (1972) in the photo-electrochemical water splittin...
Anatase TiO2 presents a large bandgap of 3.2 eV, which inhibits the use of visible light radiation (...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Abstract: Hydrogen produced from water using photocatalysts driven by sunlight is a sustainable way ...
Photocatalytic activity of pure TiO<sub>2</sub> is limited to ultraviolet (UV) light due to the wide...
Hydrogen gas is a clean burning fuel that has potential applications in stationary and mobile power ...
TiO2 anatase plays a central role in energy and environmental research. A major bottleneck toward de...
The strong band-to-band absorption of photocatalysts spanning the whole visible-light region (400–70...
There is an increasing level of interest in the use of black TiO2 prepared by thermal hydrogen treat...
TiO<sub>2</sub> anatase plays a central role in energy and environmental research. A major bottlenec...
International audienceManipulating the atomic structure of semiconductors is a fine way to tune thei...
Here, we demonstrate the effect of vacuum hydrogen annealing on TiO2 nanocrystals (H:TiO2) to modify...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...