----- 半导体光催化原理与应用
INTRODUCTION A Brief History of Photochemistry Catalysis, Photochemistry, Photocatalysis MOLECULAR PHOTOCHEMISTRY Absorption and Emission Intensity of Electronic Transitions Excited States Radiative Lifetimes Energy and Electron Transfer Proton Transfer and Hydrogen Abstraction Photosensitization Rates and Quantum Yields Quenching of Excited States Absorption, Emission, and Excitation Spectra Classification and Reactivity of Excited States MOLECULAR PHOTOCATALYSIS Hydrogenation of 1,3-Dienes Co-Cyclization of Alkynes with Nitriles Enantioselective Trifluoromethylation of Aldehydes Photoinduced Electron Transfer Catalysis Reduction and Oxidation of Water PHOTOELECTROCHEMISTRY Electronic Structure and Nature of Excited States Photocorrosion Interfacial Electron Transfer SEMICONDUCTOR PHOTOCATALYSIS Mechanisms, Kinetics, Adsorption Characterization of Photocatalysts Preparation and Properties of Photocatalysts Type A Reactions Type B Reactions Environmental Aspects Titania in Food and Personal Care Products Photoreactors Index
{{comment.content}}