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Materials Science and Engineering B· 2026Q1

Electromagnetic properties and microwave absorption enhancement mechanism of graphene-regulated Fe-Co-Zn-O@C composites

Zitao Huang, Yaxuan Chen, Ruixiang Zhang, Jinfu Zhou et al.

Short summary

Graphene-modified Fe-Co-Zn-O@C composites achieve a 5.34 GHz effective absorption bandwidth at 1.95 mm thickness and a minimum reflection loss of -47.45 dB at 1.42 mm thickness.

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Key points

  • Fe-Co-Zn-O@C core-shell composites were created using a sol-gel technique followed by epoxy resin coating and carbonization.
  • Graphene content was tuned to optimize microwave absorption performance and understand loss mechanisms.
  • A composite with 1.5 wt% graphene achieved an effective absorption bandwidth (EAB) of 5.34 GHz (12.66–18.00 GHz) at 1.95 mm thickness.
  • A composite with 2.5 wt% graphene exhibited a minimum reflection loss (RL min) of -47.45 dB at 1.42 mm thickness.

AI-generated from the title and abstract; the full text is not read.

Abstract

With the rapid development of high-frequency electronic technology, pollution caused by electromagnetic radiation has grown more serious. Consequently, creating high-performance microwave absorbing materials featuring “light weight, thin thickness, broad bandwidth, and strong attenuation” has emerged as a major area of interest. In this work, a ternary Fe-Co-Zn-O (FCZO) oxide precursor was synthesized via a sol-gel technique. Subsequently coated it with an epoxy resin, and then subjected to an oxygen-free carbonization process to construct a carbon shell, ultimately yielding Fe-Co-Zn-O@C (FCZO@C) core-shell composite materials. By systematically tuning the graphene content, the influence on the microwave absorption performance and the underlying electromagnetic loss mechanisms of the composites was thoroughly investigated. Findings indicate that with 1.5 wt% graphene, the polylactic acid (PLA)-based FCZO@C-GR/PLA-3 composite reaches an effective absorption bandwidth (EAB) of 5.34 GHz (12.66–18.00 GHz) at a matching thickness of merely 1.95 mm. When the graphene content reaches 2.5 wt%, the FCZO@C-GR/PLA-5 sample achieves a minimum reflection loss (RL min ) of −47.45 dB at an even thinner 1.42 mm, showing excellent microwave absorption capability. This study offers fresh perspectives on the structural design and performance regulation of carbon-based magnetic multicomponent composites, and offers theoretical and experimental foundations for the controllable preparation of highly efficient, lightweight and eco-friendly microwave absorbing materials.

The authors' abstract, as published at the source. Materials Science and Engineering B, 2026 · DOI ↗

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Field: Electronic, Optical and Magnetic Materials

Electronic, Optical and Magnetic MaterialsMaterials Science