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Synthesis of Sn and V Based Nanostructures: Potential Materials for Optoelectronics and Energy Storage

Abstract第7-10页
摘要第11-14页
List of Symbols and Abbreviations第14-25页
Chapter Introduction and Background第25-61页
    1.1 Advancement in Optoelectronic Semiconducting Devices第26-27页
        1.1.1 Smart Materials: from Macroscopic to Nano Devices第26-27页
    1.2 Energy Storage/conversion devices and Nanomaterials第27页
    1.3 Types of Nanostructures Synthesized in this Research第27-29页
        1.3.1 One-Dimensional Nanomaterials第28页
        1.3.2 Two-Dimensional Nanomaterials第28-29页
        1.3.3 Three-Dimensional Nanomaterials第29页
    1.4 Metal Oxides Nanomaterials第29-30页
    1.5 Metal Chalcogenides Nanomaterials第30-31页
    1.6 Tin Based Materials第31-34页
        1.6.1 SnO2第32-33页
        1.6.2 SnSe第33-34页
    1.7 Vanadium Based Materials第34-37页
        1.7.1 V2O5第35-36页
        1.7.2 ZnV2O4第36-37页
    1.8 Challenges and Motivations第37-39页
    1.9 Characterization Techniques Used for Tin and Vanadium based Nanomaterials第39-41页
    1.10 Properties of Tin and Vanadium Based Nanomaterials第41页
    1.11 Objectives of This Research第41-42页
    1.12 Thesis Organization and Significance第42-44页
    References第44-61页
Chapter 2 Fabrication of novel SnO2nanofibers bundle and their optical properties第61-81页
    2.1 Introduction第61-63页
    2.2 Experimental Details第63-64页
    2.3 Results and discussion第64-72页
        2.3.1 Structural and Morphological Analysis第64-68页
        2.3.2 Growth Mechanism第68-69页
        2.3.3 Optical Properties第69-72页
    2.4 Conclusions第72-74页
    References第74-81页
Chapter 3 Electrical and optical properties of single zigzag SnO2nanobelts第81-105页
    3.1 Introduction第81-83页
    3.2 Experimental Details第83-85页
    3.3 Results and discussion第85-95页
        3.3.1 Structural and Morphological Characterization第85-89页
        3.3.2 Electrical Properties第89-92页
        3.3.3 Optical properties第92-95页
    3.4 Conclusions第95-96页
    References第96-105页
Chapter 4 Synthesis of SnSe Nanostructures by Green CVD Route and their Optoelectronic Properties第105-130页
    4.1 Introduction第105-107页
    4.2 Experimental Details第107-109页
        4.2.1 Synthesis of SnSe Nanospheres第107-108页
        4.2.2 Synthesis of SnSe Nanowires第108-109页
    4.3 Results and discussion第109-124页
        4.3.1 Structural and Morphological Characterization of SnSe Nanospheres第109-113页
        4.3.2 Structural and Morphological Characterization of SnSe Nanowires第113-117页
        4.3.3 Growth Mechanism for SnSe Nanospheres第117-118页
        4.3.4 Growth Mechanism for SnSe Nanowires第118-120页
        4.3.5 Optical Properties of SnSe Nanospheres第120-122页
        4.3.6 Optoelectronic Properties第122-124页
    4.4 Conclusions第124-125页
    References第125-130页
Chapter 5 Synthesis, Evolution and Hydrogen Storage Properties of ZnV2O4Glomerulus Nano/microspheres: A Prospective Material for Energy Storage第130-162页
    5.1 Introduction第130-134页
    5.2 Experimental Details第134-135页
    5.3 Results and discussion第135-154页
        5.3.1 Structural and Morphological Characterization第135-145页
        5.3.2 Growth Mechanism第145-148页
        5.3.3 Hydrogen Storage and Optical Properties第148-154页
    5.4 Conclusions第154-155页
    References第155-162页
Chapter 6 Synthesis of Novel ZnV2O4Spinel Oxide Nanosheets and their Hydrogen Storage Properties第162-182页
    6.1 Introduction第162-164页
    6.2 Experimental Details第164-166页
    6.3 Results and discussion第166-175页
        6.3.1 Structural and Morphological Characterization第166-169页
        6.3.2 Growth Mechanism第169-170页
        6.3.3 Hydrogen Storage Properties第170-174页
        6.3.4 Photoluminescence Properties第174-175页
    6.4 Conclusions第175-176页
    References第176-182页
Chapter 7 Synthesis of Novel ZnV2O4Hierarchical Nanospheres and their Applications as Electrochemical Supercapacitor and Hydrogen Storage Material第182-202页
    7.1 Introduction第182-185页
    7.2 Experimental Details第185-186页
    7.3 Results and Discussion第186-197页
        7.3.1 Structural and Morphological Characterization第186-190页
        7.3.2 Growth Mechanism第190-193页
        7.3.3 Electrochemical Supercapacitor and Hydrogen Storage Properties第193-197页
    7.4 Conclusions第197-198页
    References第198-202页
Chapter 8 Fabrication of V2O5Super Long Nanobelts: their Optical, In-Situ Electrical and Field Emission Properties第202-222页
    8.1 Introduction第202-203页
    8.2 Experimental Details第203-204页
    8.3 Results and Discussion第204-215页
        8.3.1 Structural and Morphological Characterizations第204-208页
        8.3.2 Optical Properties第208-210页
        8.3.3 Field Emission Properties第210-213页
        8.3.4 Electrical Properties第213-215页
    8.4 Conclusions第215-216页
    References第216-222页
Chapter 9 Conclusions and Recommendations for Future Research第222-230页
    9.1 Conclusions第222-225页
    9.2 Novelties of the Current Research第225-227页
    9.3 Recommendations for Future Research第227-230页
Acknowledgements第230-232页
List of Published & Accepted Papers第232-237页

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