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  • 全新储能用介电复合材料研究进展(英文版)同阳 等9787513067096
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    • 出版社: 知识产权出版社
    • 出版时间:2019-12-01
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  • 商品参数
    • 作者: 同阳 等著| 同阳 等编| 同阳 等译| 同阳 等绘
    • 出版社:知识产权出版社
    • 出版时间:2019-12-01
    • 版次:1
    • 印次:1
    • 字数:198000
    • 页数:186
    • 开本:16开
    • ISBN:9787513067096
    • 版权提供:知识产权出版社
    • 作者:同阳 等
    • 著:同阳 等
    • 装帧:平装
    • 印次:1
    • 定价:68.00
    • ISBN:9787513067096
    • 出版社:知识产权出版社
    • 开本:16开
    • 印刷时间:暂无
    • 语种:暂无
    • 出版时间:2019-12-01
    • 页数:186
    • 外部编号:1202098788
    • 版次:1
    • 成品尺寸:暂无

    Chapter 1 Introduction and Research Objectives

    1.1 Theory of Dielectric Materials

    1.1.1 Permittivity

    1.1.2 Dielectric Loss

    1.1.3 Relaxation

    1.2 Classification of Dielectric Materials

    1.2.1 Non Polar Materials

    1.2.2 Polar Materials

    1.3 Application of Dielectrics

    1.3.1 High/Low Permittivity

    1.3.2 Energy Storage

    1.3.3 Wearable Electronics

    1.4 Dielectric Coites

    1.4.1 General Concepts of Coites

    1.4.2 Flexible Polymer-Based Dielectric Coites

    1.4.3 Ceramic-Glass Dielectric Coites

    1.4.4 Interface Effect in Coites

    1.5 Objectives of Research

    References

    Chapter 2 Preparation and Characterization Methods

    2.1 Raw Materials

    2.1.1 MXene 2-D Material Ti3C2Tx

    2.1.2 Calcium Copper Titanate CaCu3Ti4O12

    2.1.3 Barium Titanate BaTiO3

    2.1.4 Barium Strontium Titanate Ba0.5Sr0.5TiO3

    2.2 Conductor-Polymer Coite Fabrication

    2.2.1 Preparation

    2.2.2 Optimization

    . Ceramic-Polymer Coite Fabrication

    ..1 Preparation

    ..2 Optimization

    2.4 Ceramic-Glass Coite Fabrication

    2.4.1 Preparation

    2.4.2 Optimization

    2.5 Characterization Methods

    2.5.1 Crystalline Structure Determination

    2.5.2 Microstructure Analysis

    2.5.3 Dielectric Properties Analysis

    2.5.4 Energy Density Calculation

    References

    Chapter 3 Conductor-Polymer Coite Using 2-D Conductive Fillers

    3.1 Introduction

    3.2 Samples

    3.3 Structure and Morphology Characterization

    3.3.1 X-ray Diffraction

    3.3.2 Differential Scanning Calorimetry

    3.3.3 Scanning Electron Microscopy

    3.3.4 Fourier Transform Infrared Spectroscopy

    3.4 Dielectric Properties

    3.4.1 Frequency Dependency of Dielectric Properties at Room Temperature

    3.4.2 Temperature Dependency of Dielectric Properties

    3.4.3 Dielectric Properties at High Electric Fields

    3.5 Discussion

    3.5.1 Percolation Threshold

    3.5.2 Effect of Silicon Coupling Agent

    3.5.3 Crystallinity Increase Due to Filler Addition

    3.6 Summary

    References

    Chapter 4 Ceramic-Polymer Coite with Coupling Agent

    4.1 Introduction

    4.2 Samples

    4.3 Structure and Morphology Characterization

    4.4 Dielectric Properties

    4.4.1 Dielectric Properties with Different Filler Contents

    4.4.2 Temperature Dependency of Dielectric Properties

    4.5 Discussion

    4.5.1 Coverage of Silicon Coupling Agent

    4.5.2 Effect of Silicon Coupling Agent on Dielectric Properties

    4.6 Summary

    References

    Chapter 5 Ceramic-Glass Coite

    5.1 Introduction

    5.2 Sample and Systems

    5.3 BaTiO3-SiO2 Coites Prepared by Conventional Sintering

    5.3.1 Structure and Morphology Characterization

    5.3.2 Dielectric Properties

    5.3.3 Discussion

    5.4 Ba0.5Sr0.5 TiO3-SiO2 Coites Prepared by Conventional Sintering

    5.4.1 Structure of Coites

    5.4.2 Dielectric Properties

    5.4.3 Discussion

    5.5 Summary

    References

    Chapter 6 Conclusions and Perspectives

    6.1 Conclusions

    6.2 Perspectives

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