4.8 Article

Advances and perspectives on one- dimensional nanostructure electrode materials for potassium-ion batteries

Journal

MATERIALS TODAY
Volume 56, Issue -, Pages 114-134

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.mattod.2022.05.009

Keywords

One-dimensional nanostructure; Electrode materials; Structural-performance correlation; Potassium-ion batteries; Large-scale energy storage system

Funding

  1. National Natural Science Foundation of China [51832004, 21905218]
  2. National Key Research and Development Program of China [2020YFA0715000]
  3. Natural Science Foundation of Hubei Province [2020CFB519]
  4. Key Research and Development Program of Hubei Province [2021BAA070]
  5. Hainan Provincial Joint Project of Sanya Yazhou Bay Science and Technology City [520LH055]
  6. Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory [XHT2020-003]
  7. Sanya Science and Education Innovation Park of Wuhan University of Technology [2020KF0019, 2021KF0019]
  8. Fundamental Research Funds for the Central Universities [WUT: 2021CG014]

Ask authors/readers for more resources

This review summarizes the recent research progress and achievements of 1D nanostructure electrode materials in potassium-ion batteries (PIBs). By designing electrode materials with 1D nanostructures, various electrochemical properties can be effectively enhanced. The advanced characterizations on the reaction mechanisms of 1D nanostructure electrode materials in PIBs are briefly summarized.
Potassium-ion batteries (PIBs) have aroused considerable interest as a promising next-generation advanced large-scale energy storage system due to the abundant potassium resources and high safety. However, the K+ with large ionic radius brings restricted diffusion kinetics and severe volume expansion in electrode materials, resulting in inferior actual rate characteristics and rapid capacity fading. Designing electrode materials with one-dimensional (1D) nanostructure can effectively enhance various electrochemical properties due to the well-guided electron transfer pathways, short ionic diffusion channels and high specific surface areas. In this review, we summarize the recent research progress and achievements of 1D nanostructure electrode materials in PIBs, especially focusing on the development and application of cathode and anode materials. The nanostructure, synthetic methods, electrochemical performances and structure-performance correlation are discussed in detail. The advanced characterizations on the reaction mechanisms of 1D nanostructure electrode materials in PIBs are briefly summarized. Furthermore, the main future research directions of 1D nanostructure electrode materials are also predicted, hoping to accelerate their development into the practical PIBs market.

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