Introduction | |
Introduction | p. 3 |
Synthesis and Characterization Studies of Highly Active Titanium Oxide-based Photocatalysts | |
Chemical Methods for the Preparation of Multifunctional Photocatalysts | p. 7 |
Second Generation Visible-Light-Active Photocatalysts: Preparation, Optical Properties, and Consequences of Dopants on the Band Gap Energy of TiO2 | p. 35 |
Preparation of Titanium Oxide-Based Powders and Thin Films of High Photocatalytic Activities Using Solvothermal Methods | p. 113 |
Preparation of Highly Transparent TiO2-based Thin Film Photocatalysts by an Ion Engineering Method: Ionized Cluster Beam Deposition | p. 133 |
UV Raman Spectroscopic Studies on Titania: Phase Transformation and Significance of Surface Phase in Photocatalysis | p. 153 |
Photoluminescence Spectroscopic Studies on TiO2 Photocatalyst | p. 185 |
Surface Chemistry of TiO2 Photocatalysis and LIF Detection of OH Radicals | p. 205 |
Local Structures, Excited States, and Photocatalytic Reactivities of "Single-Site" Ti-Oxide Photocatalysts Constructed Within Zeolites or Mesoporous Materials | p. 217 |
Development of Visible Light-Responsive Titanium Oxide Photocatalysts | |
Visible-Light-Responsive Titanium Dioxide Photocatalysts | p. 235 |
Development and Sensitization of N- or S-Doped TiO2 Photocatalysts | p. 253 |
Visible Light-Responsive Titanium Oxide Photocatalysts: Preparations Based on Chemical Methods | p. 277 |
Development of Well-Defined Visible Light-Responsive TiO2 Thin Film Photocatalysts by Applying a RF-Magnetron Sputtering Deposition Method | p. 301 |
Photocatalytic Reactions for Environmentally-Harmonious Applications | |
Photo-assisted Mineralization of the Agrochemical Pesticides Oxamyl and Methomyl and the Herbicides Diphenamid and Asulam | p. 321 |
Purification of Toxic Compounds in Water and Treatment of Polymeric Materials | p. 345 |
Development of Highly Active Titanium Oxide Photocatalysts Anchored on Silica Sheets and their Applications for Air Purification Systems | p. 403 |
Photocatalytic Application of TiO2 for Air Cleaning | p. 415 |
Photocatalytic Removal of Gas-Phase Elemental Mercury Using TiO2 | p. 437 |
Photocatalytic Purification of Benzene in Air | p. 451 |
The Effect of Addition of Pt on the Gas Phase Photocatalysis over TiO2 | p. 479 |
Photoreactions of Organic Compounds with TiO2 Single Crystal Surfaces | p. 503 |
Photo-Induced Superhydrophilicity for Materials with Self-Cleaning Properties | |
Investigations of the Photoinduced Superhydrophilicity of the TiO2 Photocatalyst Surface by Near-Infrared Spectroscopy | p. 527 |
Photocatalytic Water-splitting for the Evolution of H2 from H2O | |
Photocatalytic Hydrogen Production from Water on Visible Light-Responsive TiO2 Thin Films Under Solar Light Irradiation | p. 545 |
Construction of Solid-State Thin Film Solar Cell by Applying Visible Light-Responsive TiO2 Thin Film Materials | p. 561 |
Photocatalytic Organic Syntheses | |
Photocatalytic Transformations of Sulfur-Based Organic Compounds | p. 579 |
TiO2-Based Photocatalysis for Organic Synthesis | p. 623 |
Photocatalytic Organic Syntheses | p. 647 |
Renewable Energy from the Photocatalytic Reduction | |
Renewable Energy from the Photocatalytic Reduction of CO2 with H2O | p. 673 |
Photofunctionalization | |
Photofunctionalization of TiO2 for Optimal Bone-titanium Integration: A Novel Phenomenon of Super Osseointegration | p. 699 |
Conclusions and Emerging Applications | |
Energing Applications of TiO2-Based Composites | p. 717 |
Index | p. 741 |
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