The focus of this doctoral thesis is the atomic level design of photocatalysts and gas sensing materials. The band gap narrowing in the metal oxides for the visible-light driven photocatalyst as well as the interaction of water and gas molecules on the reactive surfaces of metal oxides and the electronic structure of kaolinite has been studied by the state-of-art calculations. Present thesis is organized into three sections. The first section discusses the possibility of converting UV active photocatalysts (such as Sr2Nb2O7, NaTaO3, SrTiO3, BiTaO4 and BiNbO4) into a visible active photocatalysts by their band gap engineering. Foreign elements doping in wide band gap semiconductors is an important strategy to reduce their band gap. Therefore...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
To harness even a fraction of the solar energy incident at Earth’s surface would meet global demands...
In an effort to design systems that harvest solar light and convert this into chemical energy, the p...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The objectives of this thesis are to understand the electronic structures of oxides and oxynitrides ...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The present work considers the application of oxide semiconductors in the conversion of solar energy...
Since the discovery of the “Fujishima-Honda” effect almost five decades ago, research on photocataly...
Work on the design of new TiO2 based photocatalysts is described. The key concept is the formation o...
Exploring new types of photocatalysts and modifying the photocatalytic activity have attracted more ...
This doctoral studies focused on the development of new materials for efficient use of solar energy ...
The present work considers the application of oxide semiconductors in the conversion of solar energy...
Hydrogen titanate (H2Ti3O7) and TiO2-B polymorph are potential surfaces identified experimentally in...
The development of novel oxides, nanocomposites and architectures is in demand for the direct conver...
Heterogeneous catalysis is a topic very studied in science. Its application in technologies of energ...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
To harness even a fraction of the solar energy incident at Earth’s surface would meet global demands...
In an effort to design systems that harvest solar light and convert this into chemical energy, the p...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The objectives of this thesis are to understand the electronic structures of oxides and oxynitrides ...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The present work considers the application of oxide semiconductors in the conversion of solar energy...
Since the discovery of the “Fujishima-Honda” effect almost five decades ago, research on photocataly...
Work on the design of new TiO2 based photocatalysts is described. The key concept is the formation o...
Exploring new types of photocatalysts and modifying the photocatalytic activity have attracted more ...
This doctoral studies focused on the development of new materials for efficient use of solar energy ...
The present work considers the application of oxide semiconductors in the conversion of solar energy...
Hydrogen titanate (H2Ti3O7) and TiO2-B polymorph are potential surfaces identified experimentally in...
The development of novel oxides, nanocomposites and architectures is in demand for the direct conver...
Heterogeneous catalysis is a topic very studied in science. Its application in technologies of energ...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
To harness even a fraction of the solar energy incident at Earth’s surface would meet global demands...
In an effort to design systems that harvest solar light and convert this into chemical energy, the p...