首页> 中文期刊> 《纳微快报:英文版》 >Beyond Graphene Anode Materials for Emerging Metal Ion Batteries and Supercapacitors

Beyond Graphene Anode Materials for Emerging Metal Ion Batteries and Supercapacitors

         

摘要

Intensive research effort is currently focused on the development of efficient, reliable, and environmentally safe electrochemical energy storage systems due to the ever-increasing global energy storage demand. Li ion battery systems have been used as the primary energy storage device over the last three decades. However, low abundance and uneven distribution of lithium and cobalt in the earth crust and the associated cost of these materials, have resulted in a concerted effort to develop beyond lithium electrochemical storage systems. In the case of non-Li ion rechargeable systems, the development of electrode materials is a significant challenge, considering the larger ionic size of the metal-ions and slower kinetics. Two-dimensional(2D) materials, such as graphene, transition metal dichalcogenides, MXenes and phosphorene, have garnered significant attention recently due to their multi-faceted advantageous properties: large surface areas, high electrical and thermal conductivity, mechanical strength, etc. Consequently, the study of 2D materials as negative electrodes is of notable importance as emerging non-Li battery systems continue to generate increasing attention. Among these interesting materials, graphene has already been extensively studied and reviewed, hence this report focuses on 2D materials beyond graphene for emerging non-Li systems. We provide a comparative analysis of 2D material chemistry, structure, and performance parameters as anode materials in rechargeable batteries and supercapacitors.

著录项

  • 来源
    《纳微快报:英文版》 |2018年第4期|P.228-254|共27页
  • 作者单位

    Department of Mechanical and Nuclear Engineering;

    Kansas State University;

    Department of Mechanical and Nuclear Engineering;

    Kansas State University;

    Department of Mechanical and Nuclear Engineering;

    Kansas State University;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 蓄电池;
  • 关键词

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