Hydrogenated black titania, with a crystalline core/amorphous shell structure, has attracted global interest due to its excellent photocatalytic properties. However, the understanding of its structure-property relationships remains a great challenge and a more effective method to produce hydrogenated titania is desirable. Herein, we report a TiH2 assisted reduction method to synthesize bluish hydrogenated titania (TiO2-x:H) that is highly crystallized. The characteristic amorphous shells, which are essential for the enhancement of solar absorption and photocatalysis in many reported hydrogenated titania, are completely removed by hydrogen peroxide. The blue TiO2-x:H sample without amorphous shells delivers not only significantly improved vi...
Modification of rutile titanium dioxide (TiO2) for hydrogen generation and water cleaning is a grand...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
Hydrogen is considered a future energy carrier for clean and sustainable technology. Photocatalytic ...
To utilize visible-light solar energy to meet environmental and energy crises, black TiO2 as a photo...
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 ...
Because of their relatively high efficiency, high photostability, abundance, low cost, and nontoxic ...
Utilizing solar energy for hydrogen generation and water cleaning is a great challenge due to insuff...
Hydrogenated crystalized TiO2−x with oxygen vacant (OV) doping has attracted considerable attraction...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Hydrogenated crystalline TiO2 with oxygen vacancy (OV) defect has been broadly investigated in recen...
In terms of the traditional thermal transformation of TiO2 from protonic titanate, herein, we study ...
Hydrogenated crystalline TiO2 with oxygen vacancy (OV) defect has been broadly investigated in recen...
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...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
Hydrogen is considered a future energy carrier for clean and sustainable technology. Photocatalytic ...
To utilize visible-light solar energy to meet environmental and energy crises, black TiO2 as a photo...
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 ...
Because of their relatively high efficiency, high photostability, abundance, low cost, and nontoxic ...
Utilizing solar energy for hydrogen generation and water cleaning is a great challenge due to insuff...
Hydrogenated crystalized TiO2−x with oxygen vacant (OV) doping has attracted considerable attraction...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Hydrogenated crystalline TiO2 with oxygen vacancy (OV) defect has been broadly investigated in recen...
In terms of the traditional thermal transformation of TiO2 from protonic titanate, herein, we study ...
Hydrogenated crystalline TiO2 with oxygen vacancy (OV) defect has been broadly investigated in recen...
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...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
Hydrogen is considered a future energy carrier for clean and sustainable technology. Photocatalytic ...