4.7 Article

Solid and macroporous Fe3C/N-C nanofibers with enhanced electromagnetic wave absorbability

期刊

SCIENTIFIC REPORTS
卷 8, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-018-35078-z

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资金

  1. National Natural Science Foundation of China [21771024, 21421003, 51672026, 51527802, 51372020, 51232001]
  2. Beijing Municipal Science & Technology Commission [Z161100002116027]
  3. National Key Research and Development Program of China [2016YFA0202701]

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A series of solid and macroporous N-doped carbon nanofibers composed of Fe3C nanoparticles (named as solid Fe3C/N-C NFs, solid Fe3C/N-C NFs-1, solid Fe3C/N-C NFs-2, macroporous Fe3C/N-C NFs, macroporous Fe3C/N-C NFs-1 and macroporous Fe3C/N-C NFs-2, respectively) were prepared through carbonization of as-electrospun nanofiber precursors. The results show that the magnetic Fe3C nanoparticles (NPs) dispersed homogeneously on the N-doped carbon fibers; as-prepared six materials exhibit excellent microwave absorption with a lower filler content in comparison with other magnetic carbon hybrid nanocomposites in related literatures. Particularly, the solid Fe3C/N-C NFs have an optimal reflection loss value (RL) of -33.4 dB at 7.6 GHz. For solid Fe3C/N-C NFs-2, the effective absorption bandwidth (EAB) at RL value below -10 dB can be up to 6.2 GHz at 2 mm. The macroporous Fe3C/N-C NFs have a broadband absorption area of 4.8 GHz at 3 mm. The EAB can be obtained in the 3.6-18.0 GHz frequency for the thickness of absorber layer between 2 and 6 mm. These Fe3C-based nanocomposites can be promising as lightweight, effective and low-metal content microwave absorption materials in 1-18 GHz.

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