Han Congai, Zhang Haiyan, Zhang Danfeng, Deng Yunfei, Shen Junyao, Zeng Guoxun
School of Material and Energy, Guangdong University of Technology, Guangzhou 510006, China.
School of Computer Science and Technology, Guangdong University of Technology, Guangzhou 510006, China.
Nanomaterials (Basel). 2020 Mar 25;10(4):598. doi: 10.3390/nano10040598.
The reasonable design of magnetic carbon-based composites is of great significance to improving the microwave absorption (MA) performance of the absorber. In this work, ultrafine FeNi nanocrystals (5-7 nm) embedded in a 3D honeycomb-like carbon matrix (FeNi@C) were synthesized via a facile strategy that included a drying and carbonization process. Because of the soft magnetic property of the FeNi nanocrystals and their unique 3D honeycomb-like structure, the FeNi@C composites exhibit excellent MA abilities. When the filler loading ratio of FeNi@C/paraffin composites is only 30 wt%, the maximum reflection loss (RL) value is -40.6 dB at 10.04 GHz. Meanwhile, an ultra-wide absorption frequency bandwidth of 13.0 GHz (5.0-18.0 GHz over -10 dB) can be obtained in the thickness range of 2.0-4.5 mm, and this means that the absorber can consume 90% of the incident waves. It benefits from the dual loss components, multiple polarizations, and multiple reflections for improving MA performances of FeNi@C composites. These observations suggest that the 3D honeycomb-like FeNi@C composites have broad application prospects in exploring new MA materials that have a wide frequency bandwidth and strong absorption.
磁性碳基复合材料的合理设计对于提高吸波材料的微波吸收(MA)性能具有重要意义。在这项工作中,通过包括干燥和碳化过程的简便策略合成了嵌入三维蜂窝状碳基体(FeNi@C)中的超细FeNi纳米晶体(5-7纳米)。由于FeNi纳米晶体的软磁特性及其独特的三维蜂窝状结构,FeNi@C复合材料表现出优异的微波吸收能力。当FeNi@C/石蜡复合材料的填料负载率仅为30 wt%时,在10.04 GHz处的最大反射损耗(RL)值为-40.6 dB。同时,在2.0-4.5毫米的厚度范围内可获得13.0 GHz(5.0-18.0 GHz超过-10 dB)的超宽吸收频率带宽,这意味着该吸波材料可消耗90%的入射波。这得益于双损耗分量、多极化和多次反射对提高FeNi@C复合材料微波吸收性能的作用。这些观察结果表明,三维蜂窝状FeNi@C复合材料在探索具有宽频带和强吸收的新型微波吸收材料方面具有广阔的应用前景。