电磁辐射
材料科学
反射损耗
碳纳米管
吸收(声学)
衰减
纳米颗粒
钴
反射(计算机编程)
电磁学
光电子学
偶极子
电磁场
微波食品加热
散射
波传播
光学
多孔介质
计算电磁学
纳米技术
带宽(计算)
多孔性
异质结
太赫兹辐射
碳纤维
电磁脉冲
离散偶极子近似
磁性纳米粒子
磁偶极子
超材料
平面波
阻抗匹配
作者
Cui Li,W. L. Zhang,Yamin Wu,La Chen,Changliu He,Jiayu Xin,Siyu Wang,Xu Zhang
标识
DOI:10.1021/acsanm.6c01038
摘要
Electromagnetic wave absorption (EMA) materials have attracted considerable attention owing to their potential applications in electromagnetic stealth. Herein, lignin-derived N-doped carbon nanotube-based materials (Co–N–C/CNT–X) containing cobalt single atoms and nanoparticles were constructed to form a multiscale heterostructure with enhanced electromagnetic attenuation capability. The porous architecture and abundant defect sites in Co–N–C/CNT–E1 promote multiple reflection and dipole polarization, while cobalt species provide magnetic loss, thereby enhancing electromagnetic wave attenuation. As a result, Co–N–C/CNT–E1 exhibits a minimum reflection loss (RLmin) of −60.91 dB at a matching thickness of 2.80 mm and an effective absorption bandwidth (EAB) of 5.62 GHz at 2.30 mm. Radar cross-section (RCS) simulations further demonstrate the excellent electromagnetic stealth capability of Co–N–C/CNT–X.
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