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超薄二氧化钛纳米片的合成及其光还原CO2性能的研究

Abstract第5-7页
Chapter 1.Introduction第18-50页
    1.1 Novel Functionalities of Ultrathin Nanosheets第20-25页
        1.1.1 Electric and Optical Properties第20-22页
        1.1.2 Magnetic Properties第22-24页
        1.1.3 Thermal Properties第24-25页
    1.2 Catalytic Applications of Nanosheets第25-28页
        1.2.1 Photocatalytic Applications第25-27页
        1.2.2 Water Splitting and CO_2 Reduction第27-28页
    1.3 CO_2 Reduction into Valuable Fuels第28-30页
    1.4 Strategies of CO_2 Reduction into Hydrocarbon Fuels第30-34页
        1.4.1 Chemical Conversion Technology第30-34页
            1.4.1.1 Electrocatalytic Conversion第31-33页
            1.4.1.2 Photocatalytic Conversion第33-34页
    1.5 Fame of Photocatalytic Reduction of CO_2 into Fuels第34-36页
    1.6 Principle and Mechanism of Photocatalytic Reduction of CO_2第36-39页
    1.7 Fundamental Reactions occurring on the Semiconductor Catalyst第39-41页
    1.8 Band Energy Requirements for CO_2 Reduction第41-43页
    References第43-50页
Chapter 2.Motivation for Research Project and Investigation Objective第50-58页
    2.1 Motivation for Research Project第50-53页
    2.2 Research Objective第53-54页
    References第54-58页
Chapter 3.Synthesis Strategies and Characterization of Ultrathin Nanosheets第58-83页
    3.1 Materials and Chemicals第58-59页
    3.2 Materials Synthesis Routes第59-61页
        3.2.1 Hydrothermal Route第59-60页
        3.2.2 Solvothermal Route第60-61页
    3.3 Integrative Material Synthesis Strategies第61-64页
        3.3.1 In-Situ Integration of Guest Organic Moiety第63页
        3.3.2 Intercalation/Exfoliation of Organic Moiety第63-64页
    3.4 Characterizations for the Ultrathin Nanosheets第64-79页
        3.4.1 X-ray Diffractometry第64-66页
        3.4.2 Scanning Electron Microscopy第66-67页
        3.4.3 Transmission Electron Microscopy第67-68页
        3.4.4 Atomic Force Microscopy第68-69页
        3.4.5 Raman Spectroscopy第69-70页
        3.4.6 Fourier Transform Infra-red spectroscopy第70-71页
        3.4.7 X-ray Photoelectron spectroscopy第71-72页
        3.4.8 Thermogravimetric Analysis第72-73页
        3.4.9 Diffuse UV-Visible Reflectance Spectroscopy第73-74页
        3.4.10 Ion Chromatography第74-75页
        3.4.11 Time Delay Florescence Spectroscopy第75-77页
        3.4.12 Resistivity Measurement第77-79页
    References第79-83页
Chapter 4.TiO_2 Atomic Layers Boosting Photocatalytic CO_2 Reduction intoFormate第83-100页
    4.1 Introduction第83-84页
    4.2 Research Objective第84页
    4.3 Characterization第84-85页
        4.3.1 Calculation Details第85页
    4.4 Experimental Section Details第85-87页
        4.4.1 Synthesis of Lamellar TiO_2-Octylamine Hybrid Precursor第85-86页
        4.4.2 Synthesis of TiO_2 Atomic Layers第86页
        4.4.3 Synthesis of Bulk TiO_2第86页
        4.4.4 Photocatalytic Measurements第86-87页
    4.5 Results and Discussion第87-96页
    4.6 Conclusions第96-97页
    References第97-100页
Chapter 5.General Conclusions and Future Perspectives第100-103页
    5.1 Conclusions第100-101页
    5.2 Future Perspectives第101-103页
List of Publications第103-104页
Acknowledgements第104-105页

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