This tutorial review considers defect chemistry of TiO2 and its solid solutions as well as defect-related properties associated with solar-to-chemical energy conversion, such as Fermi level, bandgap, charge transport and surface active sites. Defect disorder is discussed in terms of defect reactions and the related charge compensation. Defect equilibria are used in derivation of defect diagrams showing the effect of oxygen activity and temperature on the concentration of both ionic and electronic defects. These defect diagrams may be used for imposition of desired semiconducting properties that are needed to maximize the performance of TiO2-based photoelectrodes for the generation of solar hydrogen fuel using photo electrochemical cells (PE...
Hydrogen is expected to become a commonly used energy carrier on the global scale in the near future...
The present work reports defect diagrams showing the effect of oxygen activity on the concentration ...
Hydrogen is expected to become a commonly used energy carrier on the global scale in the near future...
The present work considers the application of defect chemistry for engineering of semiconducting pro...
The imperative to protect the environment from increasingly apparent climate change imposes the urge...
The present work brings together the concepts of defect chemistry and photoelectrochemistry in order...
Titanium dioxide is a promising candidate for high-performance photocatalysts. Defect engineering ma...
Oxide semiconductors, including titanium dioxide (TiO2), are increasingly being considered as replac...
Light absorption, charge separation and surface reaction are considered as the main processes of pho...
The demand for energy is growing with the development of the technology. At the same time, an incre...
The present work considers the performance-related properties of TiO2-based photosensitive semicondu...
Titanium dioxide (rutile) is the promising raw material for processing photocatalysts for solar wate...
There is good reason to believe the performance of semiconductor metal oxides for catalytic applicat...
The present chapter outlines the basic defect equilibria for TiO₂. The gas/solid equilibria and the ...
Titanium dioxide, TiO2, has potential applications as a photoelectrode for photoelectrochemical gene...
Hydrogen is expected to become a commonly used energy carrier on the global scale in the near future...
The present work reports defect diagrams showing the effect of oxygen activity on the concentration ...
Hydrogen is expected to become a commonly used energy carrier on the global scale in the near future...
The present work considers the application of defect chemistry for engineering of semiconducting pro...
The imperative to protect the environment from increasingly apparent climate change imposes the urge...
The present work brings together the concepts of defect chemistry and photoelectrochemistry in order...
Titanium dioxide is a promising candidate for high-performance photocatalysts. Defect engineering ma...
Oxide semiconductors, including titanium dioxide (TiO2), are increasingly being considered as replac...
Light absorption, charge separation and surface reaction are considered as the main processes of pho...
The demand for energy is growing with the development of the technology. At the same time, an incre...
The present work considers the performance-related properties of TiO2-based photosensitive semicondu...
Titanium dioxide (rutile) is the promising raw material for processing photocatalysts for solar wate...
There is good reason to believe the performance of semiconductor metal oxides for catalytic applicat...
The present chapter outlines the basic defect equilibria for TiO₂. The gas/solid equilibria and the ...
Titanium dioxide, TiO2, has potential applications as a photoelectrode for photoelectrochemical gene...
Hydrogen is expected to become a commonly used energy carrier on the global scale in the near future...
The present work reports defect diagrams showing the effect of oxygen activity on the concentration ...
Hydrogen is expected to become a commonly used energy carrier on the global scale in the near future...