Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature and pressure, with controlled hydrogenation duration. The formation of surface disorders and Ti3+ is responsible for the color change from white unhydrogenated TiO2 to bluish-gray hydrogenated TiO2. This color change, together with increased oxygen vacancies and Ti3' enhanced the solar light absorption from UV to infra-red region. Interestingly, no band gap narrowing is observed. The photocatalytic activity in the UV and visible region is controlled by Ti3+ and oxygen vacancies respectively. Both Ti3+ and oxygen vacancies increases the electron density on the catalyst surface thus facilitates center dot OH radicals formation. The lifespan of su...
Hydrogenation of TiO₂ enhances its visible photoabsorption, leading to efficient photocatalytic acti...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
In this study, conventional TiO2 powder was heated in hydrogen (H-2) gas at a high temperature as pr...
Photocatalysis is a promising advanced water treatment technology, and recently the possibility of u...
Hydrogenated titanium dioxide (H-TiO2) has drawn much research attention in the photocatalysis socie...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
In this study, conventional TiO2 powder was heated in hydrogen (H2) gas at a high temperature as pre...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
Up to now, the explanation for the origin of enhanced photocatalytic activity of N doped TiO2 (N-TiO...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Hydrogenation of TiO₂ enhances its visible photoabsorption, leading to efficient photocatalytic acti...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Preparation of highly photo-activated TiO2 is achievable by hydrogenation at constant temperature an...
In this study, conventional TiO2 powder was heated in hydrogen (H-2) gas at a high temperature as pr...
Photocatalysis is a promising advanced water treatment technology, and recently the possibility of u...
Hydrogenated titanium dioxide (H-TiO2) has drawn much research attention in the photocatalysis socie...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
In this study, conventional TiO2 powder was heated in hydrogen (H2) gas at a high temperature as pre...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
Up to now, the explanation for the origin of enhanced photocatalytic activity of N doped TiO2 (N-TiO...
Seeking for clean and renewable energy resource has been a research focus for the past decades. Carb...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Hydrogenation of TiO₂ enhances its visible photoabsorption, leading to efficient photocatalytic acti...
Photocatalysis based technologies have a key role in addressing important challenges of the ecologic...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...