Ultra-wideband absorption of C/Co composites achieved through metamaterial-based design
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School of Electronic Science and Engineering, Nanjing University, Nanjing 210093, China

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Supported by the National Natural Science Foundation of China (61271077, 11004095, 11104134).

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    Abstract:

    We synthesized C/Co composites via a facile one-step pyrolysis procedure and observed excellent dielectric dispersion properties at a 35 wt% filling concentration. At a thickness of 2.5 mm, the composites exhibited a minimum reflection of -23.7 dB at 11.2 GHz, with a bandwidth of 3.8 GHz (RL≤-10 dB). To further improve their absorption performance, we optimized the macrostructure of the absorber using an all-dielectric metamaterial design. The optimized design successfully extended the less than -10 dB absorption bandwidth to 15 GHz (7.0~22.0 GHz). Our results provide a useful reference for optimizing the preparation technology and structural design of high-performance microwave absorbers.

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WANG Xiao-Kun, GUO Meng-Chao, LIANG Lei-Lei, LI Wei, TANG Dong-Ming, ZHANG Bao-Shan, YE Jian-Dong, YANG Yi. Ultra-wideband absorption of C/Co composites achieved through metamaterial-based design[J]. Journal of Infrared and Millimeter Waves,2024,43(1):91~97

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History
  • Received:May 26,2023
  • Revised:December 01,2023
  • Adopted:June 26,2023
  • Online: November 27,2023
  • Published: