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Details

Autor(en) / Beteiligte
Titel
High-performance electromagnetic wave absorbers based on Fe-based MOFs-derived Fe/C composites
Ist Teil von
  • Synthetic metals, 2021-02, Vol.272, p.116663, Article 116663
Ort / Verlag
Lausanne: Elsevier B.V
Erscheinungsjahr
2021
Link zum Volltext
Quelle
Elsevier ScienceDirect Journals Complete
Beschreibungen/Notizen
  • A combination of carbon materials and metal materials has received extensive attention of applications in electromagnetic wave (EMW) absorption. Herein, the porous Fe/C composites were fabricated by pyrolyzing Fe-MOFs precursor with different organic ligand ratios under Ar atmosphere. The Fe/C composites exhibited an excellent EMW absorption ability on account of the unique porous structure architecture, enhanced dipolar/interfacial polarization between two components, improved multiple reflection and scattering, and better impedance matching. The EMW absorption performance of three kinds of porous Fe/C composites was studied in detail. Among them, the minimum reflection loss (RL) of FC-1 sample could reach − 19.57 dB at a thickness of 2 mm with a better effective bandwidth (RL ≤ − 10 dB) covering the whole Ku band. Notably, the optimal RL of FC-2 sample achieved − 56.94 dB at a thickness of 3.1 mm, besides, the effective absorption bandwidth could reach 6.73 GHz with the thickness of only 2.5 mm. These results confirm that the as-prepared Fe/C composites with high-performance EMW absorption ability and broad effective bandwidth are a promising candidates as an EMW absorber. A facile route was adopted to synthesize the Fe/C composites with a unique porous architecture via pyrolysis of Fe-MOF precursors, which exhibit an excellent EMW absorption ability, and is of great potential in the fabrication of broad bandwidth and lightweight EMW absorber. [Display omitted] •Porous Fe/C composites were fabricated as lightweight high-performance EMW absorber.•The optimal achieved − 56.94 dB at a thickness of 3.1 mm.•The effective absorption bandwidth could reach 6.73 GHz with the thickness of only 2.5 mm.
Sprache
Englisch
Identifikatoren
ISSN: 0379-6779
eISSN: 1879-3290
DOI: 10.1016/j.synthmet.2020.116663
Titel-ID: cdi_proquest_journals_2519434715

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