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Updated: Jan 18, 2026

Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
Published on: December 27, 2012
Preparation of ternary Fe3Si/SiC/Si3N4 nanofiber material for wideband electromagnetic wave absorption
Penghui Li1, Dandan Xiang1, Qinchuan He2
1College of Materials and Chemistry & Chemical Engineering, Chengdu University of Technology, Chengdu 610059, China.
Abstract:
To achieve high-performance electromagnetic wave absorption in silicon carbide (SiC) nanofibers, it is essential to address both impedance matching and energy loss mechanisms. This study introduces a multiphase synergistic modification strategy: incorporating Si3N4 to improve surface impedance matching and adding magnetic Fe3Si to enhance energy dissipation. The effects of carbothermal reduction temperatures on material composition, structure, and absorption properties were systematically investigated. At 1500 °C, the optimized composite demonstrated exceptional performance with a minimum reflection loss (RLmin) of -62.34 dB at 6.40 GHz and a broad effective absorption bandwidth of 14.02 GHz (3.98-18 GHz), covering 77.89 % of the tested frequency range. The Fe3Si/SiC/Si3N4 ternary composite nanofibers form an "inductance-capacitance-resistance" microcircuit structure, which enhances polarization loss, conductivity loss and magnetic loss, thereby improving the electromagnetic wave absorption performance of SiC nanofibers.
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