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锡硫化物功能纳米结构的结构和光学性质

Acknowledgement第6-8页
Abstract第8-9页
摘要第10-19页
List of Abbreviations and Symbols第19-21页
1 Introduction第21-29页
    1.1 Introduction第21-27页
    1.2 Focus of this thesis第27-28页
    1.3 Thesis guidelines第28-29页
2 Literature survey of Tin Chalcogenides第29-59页
    2.1 Nano-science and nanotechnology第29-33页
    2.2 Semiconductors第33-35页
    2.3 Quantum effects in semiconductors第35-37页
        2.3.1 Band structure of semiconductors第35-36页
        2.3.2 Quantum confinement effect第36-37页
    2.4 Nano-structured materials第37-40页
    2.5 Chalcogenides第40-42页
        2.5.1 Tin monosulfide (SnS)第41-42页
        2.5.2 Tin monosulfide (SnS)第42页
    2.6 Structural and optical properties of tin chalcogenides第42-44页
        2.6.1 Crystalline structure of SnS第42-43页
        2.6.2 Basic physical parameters SnS第43-44页
        2.6.3 Applications of SnS第44页
    2.7 Phonon modes of tin sulfide第44-47页
    2.8 Optical properties of SnS第47-48页
    2.9 Bandgap calculation第48-50页
    2.10 Literature review of SnS nanostructures第50-53页
    2.11 The crystalline structure of SnS_2第53页
    2.12 Basic physical parameters SnS_2第53-54页
    2.13 Optical properties of SnS_2第54页
    2.14 Potential applications of SnS_2第54-55页
    2.15 Optical phonon modes of tin (Ⅳ) sulfide(SnS_2)第55-57页
    2.16 Literature review of tin disulfide(SnS_2)第57-59页
3 Experimental methods第59-82页
    3.1 Hydrothermal synthesis第59-61页
    3.2 Autoclave第61-62页
    3.3 Characterization techniques第62-82页
        3.3.1 X-ray diffraction (XRD) spectroscopy第63-64页
        3.3.2 Scanninn electron microscope(SEM)第64-65页
        3.3.3 Fundamental principles of scanning electron microscopy(SEM)第65-66页
        3.3.4 Energy dispersive x-ray spectroscopy (EDS)第66-67页
        3.3.5 Transmission electron microscopy (TEM, HRTEM)第67-69页
        3.3.6 Selected-area electron diffraction(SAED)第69-70页
        3.3.7 Raman spectroscopy第70-73页
        3.3.8 Ultraviolet-visible-near infrared(UV-VIS-NIR)spectrophotometry第73-75页
        3.3.9 Photoluminescence spectroscopy (PL)第75-76页
        3.3.10 Hydrogen sorption properties measurements第76-79页
        3.3.11 Electrochemical characterization第79-82页
4 Synthesis of Tin Chalcogenides第82-89页
    4.1 Materials /chemicals used for nanocrystallinc第82页
    4.2 Main contents of the thesis and significance第82-83页
    4.3 Hydrothermal synthesis of sulfides第83-84页
    4.4 Tin monosulfide (SnS)第84页
    4.5 Water and ethylene glycol as reaction medium第84-87页
    4.6 Tin disulfide (SnS_2)第87-89页
5 Hydrothermal synthesis, characterization, optical properties andhydrogen sorption of SnS prismatic nanorods第89-96页
    5.1 Introduction第89-90页
    5.2 Experimental第90页
        5.2.1 Sample preparation第90页
    5.3 Characterization第90-91页
    5.4 Results and discussion第91-95页
    5.5 Summary第95-96页
6 Hydrothermal synthesis of chalcogenide SnS nanorods: Latticevibrations and optical properties第96-102页
    6.1 Introduction第96-97页
    6.2 Experimental第97-98页
        6.2.1 Sample preparation第97-98页
    6.3 Characterization第98页
    6.4 Results and discussion第98-100页
    6.5 Summary第100-102页
7 Hydrothermal preparation, synthesis and Raman vibrations ofchalcogenide SnS nanorods第102-108页
    7.1 Introduction第102-103页
    7.2 Experimental第103页
        7.2.1 Sample preparation第103页
    7.3 Characterization第103-104页
    7.4 Results and discussion第104-106页
    7.5 Summary第106-108页
8 Structural and electrochemical properties of flower-like SnS_2architectures as a cathode material for lithium-sulfur batteries第108-115页
    8.1 Introduction第108-110页
    8.2 Experimental第110页
        8.2.1 Sample preparation第110页
        8.2.2 Characterization第110页
    8.3 Results and discussion第110-114页
    8.4 Summary第114-115页
9 Conclusions & future research第115-117页
10 Suggestions for future work第117-119页
References第119-138页
Author's Curriculum Vitae第138-143页
学位论文数据集第143页

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