首页> 中文期刊> 《纳米材料科学(英文版)》 >Advanced architecture designs towards high-performance 3D microbatteries

Advanced architecture designs towards high-performance 3D microbatteries

         

摘要

Rechargeable microbatteries are important power supplies for microelectronic devices.Two essential targets for rechargeable microbatteries are high output energy and minimal footprint areas.In addition to the development of new high-performance electrode materials,the device configurations of microbatteries also play an important role in enhancing the output energy and miniaturizing the footprint area.To make a clear vision on the design principle of rechargeable microbatteries,we firstly summarize the typical configurations of microbatteries.The advantages of different configurations are thoroughly discussed from the aspects of fabrication technologies and material engineering.Towards the high energy output at a minimal footprint area,a revolutionary design for microbatteries is of great importance.In this perspective,we review the progress of fabricating microbatteries based on the rolled-up nanotechnology,a derivative origami technology.Finally,we discussed the challenges and perspectives in the device design and materials optimization.

著录项

  • 来源
    《纳米材料科学(英文版)》 |2021年第2期|P.140-153|共14页
  • 作者单位

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz Germany;

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz Germany;

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz Germany;

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz Germany;

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz Germany;

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz Germany;

    Institute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden Germany;

    Material Systems for Nanoelectronics Chemnitz University of Technology 09107 Chemnitz GermanyInstitute for Integrative Nanosciences Leibniz IFW Dresden 01069 Dresden GermanyCenter for Materials Architectures and Integration of Nanomembranes(MAIN) Chemnitz University of Technology 09126 Chemnitz GermanySchool of Science Dresden University of Technology Dresden 01062 Germany;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 中国工业经济;
  • 关键词

    Microbatteries; Origami technologies; Rolled-up nanotechnology; 3D devices; Energy storage performance;

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