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    • 钠离子电池新型碳基电极及其界面研究(英文版)(精)/清华大学优秀博士学位论文丛书
      • 作者:张俊|责编:孙亚楠
      • 出版社:清华大学
      • ISBN:9787302635871
      • 出版日期:2024/10/01
      • 页数:121
    • 售价:35.6
  • 内容大纲

        本书以钠离子电池负极中的表面改性和界面反应为切入点,全面综述了钠离子电池碳电极的研究进展与动态,并提出了新型碳电极设计及负极电化学界面改性的针对性策略。
        本书可供材料科学、储能电化学、化学工程等领域的高校师生和科研院所研究人员及相关技术人员阅读参考。
  • 作者介绍

  • 目录

    Chapter 1  Introduction
      1.1  Overview
      1.2  Recent progress of SIBs in academy and industry
      1.3  Potential application of carbon materials as cathode
      1.4  Practical carbon anodes towards high energy or power density
      1.5  The main research topics and content
    Chapter 2  Experimental Details
      2.1  Main reagents and raw materials
      2.2  Main equipment
      2.3  Characterization
        2.3.1  Structural characterization
        2.3.2  Electrochemistry
    Chapter 3  Folded-Graphene as an Ultrafast Cathode Material
      3.1  Introduction
      3.2  Experimental section
      3.3  High-density folded-graphene cathode for SIBS
      3.4  Ultrafast high-volumetric sodium storage via folded-graphene cathode
      3.5  Summary
    Chapter 4  The Interplay of Oxygen Functional Groups and Folded
    Texture in Folded-Graphene Cathode
      4.1  Introduction
      4.2  Experimental section
      4.3  The critical roles of oxygen functional groups and folded texture
      4.4  The interplay of oxygen functional groups and folded texture
      4.5  Summary
    Chapter 5  Achieving Efficient Sodium Storage on Carbon Anodes with Ether-derived Solid Electrolyte Interphase (SEI)
      5.1  Introduction
      5.2  Experimental section
      5.3  Achieving efficient sodium storage on diverse carbon anodes with ether-based electrolytes
      5.4  Advantages of ether-derived SEI
      5.5  Summary
    Chapter 6  Evolution of the Electrochemical Interface with Ether-based Electrolytes
      6.1  Introduction
      6.2  Experimental section
      6.3  Improved sodiation depth in ether-based electrolytes
      6.4  Evolution of interfacial electrochemistry with ether-based electrolytes
      6.5  Summary
    Chapter 7  Conclusion and Perspective
      7.1  Conclusion
      7.2  Perspective
    References
    Research Achievements
    Acknowledgements