张猛   

张猛,副教授,硕士生导师,“泰山学者”团队核心成员。江苏省“科技副总”、青岛市十二届青年科技奖、首届“市北英才”、青岛科技大学“科研新秀”、中国晶体学会会员、材料研究学会专业会员、中国化工学会高级会员、全国材料与器件科学家智库磁性材料与器件专家委员会常务委员、中国仪器仪表学会仪表功能材料分会电子元器件关键材料与技术专业委员会委员、国家自然科学基金/山东省自然科学基金/青岛市高新技术企业评审专家、S...Detials

Structural design and controllable preparation of SiC_(NWs)@Fe_3O_4@NC nanocomposites for electromagnetic wave absorption

Release time:2025-07-14  Hits:

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  • Abstract:Using SiC nanowires (SiC_(NWs)) as the substrate,reflux–annealing and electrodeposition–carbonization were sequentially applied to integrate SiC nanowires with magnetic Fe_3O_4 nanoparticles and amorphous nitrogen-doped carbon (NC) for the fabrication of Si C_(NWs)@Fe_3O_4@NC nanocomposite.Comprehensive testing and characterization of this product provided valuable insights into the impact of structural and composition changes on its electromagnetic wave absorption performances.The optimized SiC_(NWs)@Fe_3O_4@NC nanocomposite,which has 30wt%filler content and a corresponding thickness of 2.03 mm,demonstrates exceptional performance with the minimum reflection loss (RLm_(in)) of-53.69 dB at 11.04 GHz and effective absorption bandwidth (EAB) of 4.4 GHz.The synergistic effects of the enhanced nanocomposite on electromagnetic wave absorption were thoroughly elucidated using the theories of multiple scattering,polarization relaxation,hysteresis loss,and eddy current loss.Furthermore,a multicomponent electromagnetic wave attenuation model was established,providing valuable insight into the design of novel absorbing materials and the enhancement of their absorption performances.This research demonstrated the significant potential of the SiC_(NWs)@Fe_3O_4@NC nanocomposite as a highly efficien electromagnetic wave-absorbing material with potential applications in various fields,such as stealth technology and microwave absorption.
  • Volume:v.32;No.245
  • Issue:03
  • Translation or Not:no