4.7 Review

Flexible carbon fiber-based composites for electromagnetic interference shielding

期刊

RARE METALS
卷 41, 期 11, 页码 3612-3629

出版社

NONFERROUS METALS SOC CHINA
DOI: 10.1007/s12598-022-02057-3

关键词

Carbon fibers; Electromagnetic interference shielding; Flexible; Composites

资金

  1. National Natural Science Foundation of China [51972045]
  2. Foundation of Yangtze Delta Region Institute (HuZhou) of UESTC [U03210030]
  3. Fundamental Research Funds for Chinese Central Universities, China [ZYGX2019J025]
  4. Sichuan Science and Technology Program [2021YFG0373]

向作者/读者索取更多资源

With the rapid development of electronic information technology, the waste electromagnetic radiation generated by wireless and electronic devices has become a serious threat to human health. Developing efficient and flexible electromagnetic interference (EMI) shielding materials is an effective approach to combat electromagnetic pollution. Flexible carbon fiber composites possess the necessary physical properties for EMI shielding applications, and the addition of different filler materials can further enhance the shielding performance. This review also summarizes the novel structural designs of flexible carbon fiber-based EMI shielding materials.
With the rapid development of electronic information technology, the waste electromagnetic radiation generated by the wireless and various other electronic devices has caused serious harm to human health. The development of high-efficiency flexible electromagnetic interference (EMI) shielding materials has become one of the most effective ways to mitigate the increasingly serious problem of electromagnetic pollution. Flexible carbon fiber composites possess most of the physical requirements needed for EMI shielding applications, including high electrical conductivity, large specific surface area, light weight, flexibility, porous structure, and adjustable physical and chemical properties, and various morphology of carbon fibers-based composites applied EMI. In this review, the primary EMI shielding mechanism of carbon-fiber-based materials is presented. Since carbon fiber suffers from a low absorption efficiency when used for EMI shielding by itself, it is usually combined with additional EMI filling materials. Therefore, the methods of adding EMI filler materials to the carbon fiber framework and the influence of different fillers on the EMI shielding performance are also discussed. In addition, the novel structural designs of flexible carbon fiber-based EMI shielding materials, including fiber orientation, core-shell structure, and multilayer heterostructure, are summarized in terms of their classification, which includes composites with metal, polymer, nano-carbon, and MXenes. The review concludes with a brief discussion of the challenges, research directions, and future prospects of carbon-fiber-based EMI shielding materials.

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