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Synthesis of Metal Oxides as Prospective Anodes for Lithium Ion Batteries

ABSTRACT第8-9页
摘要第10-12页
Abbreviations第12-25页
CHAPTER 1 Introduction第25-75页
    1.1. General Background第25-27页
    1.2. Definition of Battery第27-28页
        1.2.1. Primary Batteries第27-28页
        1.2.2 Rechargeable batteries第28页
    1.3. Introduction of Lithium-ion batteries第28-33页
        1.3.1. Basics concepts for Li-ion batteries第29-30页
            1.3.1.1 Cathode and anode第29页
            1.3.1.2 Charge-discharge第29-30页
            1.3.1.3 Coulombic efficiency第30页
            1.3.1.4 C-rates第30页
        1.3.2 Principle of LIBs第30-32页
        1.3.3 Configurations of Li-ion batteries第32-33页
    1.4. Cathode materials for Li-ion batteries第33-43页
        1.4.1. Layered transition metal oxides第33-37页
        1.4.2. Spinal LiMn2O_4第37-38页
        1.4.3. Olivine- LiMPO_4 (M=Fe, Co, Ni,Mn)第38-40页
        1.4.4. LiVPO_4F and Li_3V_2(PO_4)_3第40-41页
        1.4.5. Heavily-doped LiMn_2O_4 as 5-V cathode第41-42页
        1.4.6 Summary第42-43页
    1.5. Anode materials for LIBs第43-58页
        1.5.1. Carbon-based anode materials第43-47页
        1.5.2 Alloy based anode materials第47-52页
        1.5.3. Transition metal oxides第52-58页
        1.5.4. Summary第58页
    1.6. Objectives of the work第58页
    1.7. References第58-75页
CHAPTER 2 Experimental Techniques第75-85页
    2.1. Overview第75页
    2.2. Hydrothermal Procedure:第75-76页
    2.3. Characterization Techniques第76-80页
        2.3.1. X-ray diffraction (XRD)第76页
        2.3.2. Thermogravimetric Analysis第76-77页
        2.3.3. Scanning Electron Microscope (SEM)第77-78页
        2.3.4. Transmission electron microscope(TEM)第78页
        2.3.5. Fourier transform infrared spectroscopy (FTIR)第78页
        2.3.6. X-ray Photon spectroscopy (XPS)第78-79页
        2.3.7. Raman spectroscopy第79页
        2.3.8. BET Measurement第79-80页
    2.4. Cell fabrication第80-83页
        2.4.1 Electrode fabrication第80页
        2.4.2. Cell Assembly第80-81页
        2.4.3. Electrochemical Measurements第81-83页
            2.4.3.1 Cyclic voltammetry第81-82页
            2.4.3.2 Galvanostatic charge-discharge testing第82页
            2.4.3.3 Electrochemical Impedance Spectroscopy (EIS)第82-83页
    2.5. References第83-85页
CHAPTER 3 Tween-80 guided CuO nanostructures as a high capacity anode material for Li-ion batteries第85-107页
    3.1. Introduction第85-87页
    3.2. Experimental第87-89页
        3.2.1. Materials第87页
        3.2.2. Synthesis of CuO nanowires第87页
        3.2.3. Synthesis of Thorn-like CuO第87-88页
        3.2.4. Structural characterization第88页
        3.2.5. Electrochemical studies第88-89页
    3.3. Results and discussion第89-102页
        3.3.1. XRD studies第89-90页
        3.3.2. FTIR analysis第90-91页
        3.3.3. TGA analysis第91-92页
        3.3.4. SEM and TEM analysis第92-93页
        3.3.5. XPS investigations第93-94页
        3.3.6. BET surface area and pore size essay第94-95页
        3.3.7. Electrochemical measurements第95-102页
    3.4. Summary第102页
    3.5. References第102-107页
CHAPTER 4 Porous one dimensional nanostructures of SnO_2 with their mechanism:An efficient anodematerial for Lithium-ion battery第107-129页
    4.1. Introduction第107-109页
    4.2. Experimental第109-111页
        4.2.1. Materials preparation第109-110页
        4.2.2 Materials Characterization第110-111页
        4.2.3. Electrochemical studies第111页
    4.3. Results and discussion第111-124页
        4.3.1. Mechanism of formation第111-112页
        4.3.2. XRD pattern study第112-113页
        4.3.3. FTIR study第113-114页
        4.3.4. TGA study第114-115页
        4.3.5. SEM and TEM analysis第115-117页
        4.3.6. BET analysis第117-118页
        4.3.7. Electrochemical properties第118-124页
    4.4 Summary第124页
    4.5. References第124-129页
CHAPTER 5 Facile synthesis of ternary Cu-Cu_2O-RGO composite and investigation of their performanceas an anode material for lithium-ion batteries第129-147页
    5.1. Introduction第129-131页
    5.2. Work Plan第131页
    5.3. Experimental第131-133页
        5.3.1. Synthesis of Cu-Cu_2O-RGO第131-132页
        5.3.2. Physical Characterization第132页
        5.3.3. Electrochemical measurements第132-133页
    5.4. Results and Discussion第133-136页
        5.4.1. XRD analysis第133-134页
        5.4.2. Raman analysis第134-135页
        5.4.3. SEM and TEM analysis第135-136页
    5.5. Electrochemical studies第136-141页
    5.6. Summary第141-142页
    5.7. References第142-147页
CHAPTER 6 Conclusion and outlook第147-151页
    6.1. Conclusion第147-148页
    6.2. Outlook第148-151页
ACKNOWLEDGEMENTS第151-153页
List of Publication第153-155页
Resume of Author第155-157页
Resume of Supervisor第157-158页
附件第158-159页

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