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几种纳米线组装体的结构设计与性能研究

摘要第5-7页
ABSTRACT第7-8页
Chapter 1: Recent Research and Progress on Synthesis andSelf-Assembly of Nanomaterials第12-68页
    1.1. Synthesis of Te nanostructures with controlled morphologies第12-35页
        1.1.1. Hydrothermal and Solvothermal synthesis第13-18页
            1.1.1.1. Hydrothermal process第13-18页
        1.1.2. Solvothermal method第18-23页
        1.1.3. Vacuum vapor deposition第23-27页
            1.1.3.1. Synthesis by Vacuum vapor deposition method第23-25页
            1.1.3.2. By Physical vapor deposition (PVD)第25-27页
            1.1.3.3. By Chemical vapor deposition method第27页
        1.1.4. Large-scale synthesis of Te nanostructures第27-28页
        1.1.5. Sublimation-condensation process第28-29页
        1.1.6. Reflux process第29-32页
        1.1.7. Microwave assistant第32-33页
        1.1.8. Ultrasonic-induced growth第33-35页
    1.2. Nanowire Self-Assembly for Flexible Electronic Devices第35-58页
        1.2.1. 1D NW Assemblies for Flexible Electronic Devices第35-41页
            1.2.1.1. Spinning Assembly第36-38页
            1.2.1.2. Template-Assisted Growth Assembly第38-40页
            1.2.1.3. Dip-Coating Assembly第40-41页
        1.2.2. 2D NW Assemblies for Flexible electronic devices第41-50页
            1.2.2.1. Interfacial Assembly第42-45页
            1.2.2.2. External Force Assisted Assembly第45-50页
        1.2.3. 3D NW Assembly for Flexible Electronic Devices第50-58页
            1.2.3.1. Physical Template Assembly第51-53页
            1.2.3.2. Freeze-Drying Assembly第53-54页
            1.2.3.3. Gelatinization第54-55页
            1.2.3.4. Biosynthesis of Bacterial Cellulose第55-58页
    References第58-68页
Chapter 2: Synthesis of Self-assembled W_(18)O_(49)NWs/rGO composites第68-80页
    2.1. Introduction第68-69页
    2.2. Experimenta第69-71页
        2.2.1 Synthesis of Graphene Oxide (GO)第69-70页
        2.2.2. Synthesis of W_(18)O_(49)NWs第70页
        2.2.3. Synthesis of W_(18)O_(49)NWs/rGO Composites第70页
        2.2.4. Characterization第70-71页
    2.3. Result and Discussion第71-75页
    2.4. Summary of chapter第75-76页
    References第76-80页
Chapter 3: Magnetic Field-Assisted Self-Assembly of High AspectSiO_2-coated Fe_3O_4-AgNWs第80-96页
    3.1. Introduction第81-82页
    3.2. Experimental第82-84页
        3.2.1 Source of material第82页
        3.2.2. Synthesis of AgNWs第82-83页
        3.2.3. Synthesis of Fe_3O_4-AgNWs第83页
        3.2.4. Synthesis of SiO_2-coated Fe_3O_4-AgNWs第83页
        3.2.5. Magnetic Assembly of SiO_2-coated Fe_3O_4-AgNWs第83页
        3.2.6. Characterization第83-84页
    3.3. Result and Discussion第84-91页
        3.3.1. Synthesis of SiO_2-coated Fe_3O_4-AgNWs第84-87页
        3.3.2. Magnetic field assisted assembly第87-88页
        3.3.3. Measurement of the degree of alignment第88-90页
        3.3.4. Effect of factors on Magnetic field assembly of SiO_2-coatedFe_3O_4-AgNWs第90-91页
    3.4. Summary of Chapter第91-93页
    References第93-96页
Chapter 4: Application of Nanowire Self-Assembled Structures第96-116页
    4.1. Introduction第97页
    4.2. Application of self-assembled structures第97-103页
        4.2.1. Toluene gas sensing of self-assembled ultrathin tungsten Oxide NWs/rGOComposites第97-98页
        4.2.2. Fabrication of Gas Sensors第98页
        4.2.3. Gas sensing study第98-102页
        4.2.4. Gas sensing mechanism第102-103页
    4.3. Effective Magnetic Field Perception and enhanced magnetic heatingefficiencies of ordered magnetic SiO_2-coated Fe_3O_4-AgNWs films第103-106页
    4.4. Flexible and Transparent Supercapacitors Based on W_(18)O_(49)NW/rGONanocomposite Films第106-111页
        4.4.1. Electrochromic properties of W_(18)O_(49)NW/rGO composite basesupercapacitor第109-111页
    4.5. Chapter summary第111-112页
    References第112-116页
Conclusions and Future Prospectives第116-120页
Acknowledgement第120-122页
List of Publications第122页

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