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June 1, 2026Materials Science and Technology0 citations

Effect of modified graphene oxide on properties of carbonyl iron composites

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ZLZekai LiNanjing University of Posts and TelecommunicationsGXGuozhi XieNanjing University of Posts and TelecommunicationsYLYaqi LiNanjing University of Posts and Telecommunications

Key Points

  • The aim is to evaluate how modified graphene oxide affects the properties of carbonyl iron composites.
  • Composites prepared by modifying graphene oxide followed by ultrasonic mixing with carbonyl iron powder.
  • Cu-coated GO was used at a concentration of 0.1 wt%.
  • The composites achieved a minimum reflection loss of -16.47 dB at 2.0 mm thickness.
  • Effective absorption bandwidth exceeded 1.44 GHz, while thermal conductivity was 2.83 W/(m·K).
  • Increasing Cu-coated GO content improved thermal conductivity but slightly reduced absorption properties.

Abstract

In this study, wave absorption-heat conduction composites were prepared by modifying graphene oxide (GO), followed by ultrasonic mixing with carbonyl iron powder (CIP). The composites (0.1 wt% Cu-coated GO) exhibited a minimum reflection loss (RL min ) of −16.47 dB at 2.0 mm and an effective absorption bandwidth (EAB) exceeding 1.44 GHz, while the thermal conductivity reached 2.83 W/(m·K), surpassing that of pure carbonyl iron powder (2.66 W/(m·K)). Increasing the content of Cu-coated GO significantly enhanced the thermal conductivity but the absorption properties exhibited a slight decline. At the thickness of 1–2 mm, the reflection loss peaks for the composites are entirely within the S-band. Therefore, the CIP/Cu-coated GO composites demonstrate strong potential for S-band applications.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a1d236002fbce9130638fbdhttps://doi.org/10.1177/02670836261418384
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