A rationally designed crystalline Ti3+ core/amorphous Ti4+ shell configuration can reverse the population disparity between holes and electrons reaching the surface of microsized rutile TiO2 photocatalyst, thus significantly enhancing its photocatalytic activity by two orders of magnitude in terms of the hydrogen production rate under the irradiation of UV–vis light
Hydrogenation of TiO₂ enhances its visible photoabsorption, leading to efficient photocatalytic acti...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
The effect of the crystalline phase of TiO 2 (anatase, rutile and brookite) on its photocatalytic ac...
The authors thank the Major Basic Research Program, Ministry of Science and Technology of China (201...
Modification of rutile titanium dioxide (TiO<sub>2</sub>) for hydrogen generation and water cleaning...
The photocatalytic activity in hydrogen production from biomass reforming can be significantly enhan...
TiO2 is one of the most important photocatalysts, but it is inefficient for visible light photocatal...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
Modification of rutile titanium dioxide (TiO2) for hydrogen generation and water cleaning is a grand...
The effect of the crystalline phase of TiO2 (anatase, rutile and brookite) on its photocatalytic act...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
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 ...
The importance of electron concentration in rutile TiO2 photocatalysts motivated us to apply H2 redu...
The fabrication of high-performance, low-cost photocatalysis materials, which absorb in the visible-...
Hydrogenation of TiO₂ enhances its visible photoabsorption, leading to efficient photocatalytic acti...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
The effect of the crystalline phase of TiO 2 (anatase, rutile and brookite) on its photocatalytic ac...
The authors thank the Major Basic Research Program, Ministry of Science and Technology of China (201...
Modification of rutile titanium dioxide (TiO<sub>2</sub>) for hydrogen generation and water cleaning...
The photocatalytic activity in hydrogen production from biomass reforming can be significantly enhan...
TiO2 is one of the most important photocatalysts, but it is inefficient for visible light photocatal...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
Modification of rutile titanium dioxide (TiO2) for hydrogen generation and water cleaning is a grand...
The effect of the crystalline phase of TiO2 (anatase, rutile and brookite) on its photocatalytic act...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
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 ...
The importance of electron concentration in rutile TiO2 photocatalysts motivated us to apply H2 redu...
The fabrication of high-performance, low-cost photocatalysis materials, which absorb in the visible-...
Hydrogenation of TiO₂ enhances its visible photoabsorption, leading to efficient photocatalytic acti...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
The effect of the crystalline phase of TiO 2 (anatase, rutile and brookite) on its photocatalytic ac...