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Self-assembly sandwich-like Fe, Co, or Ni nanoparticles/reduced graphene oxide composites with excellent microwave absorption performance

机译:自组装夹心式Fe,CO,或Ni纳米颗粒/氧化石墨烯复合材料,具有优异的微波吸收性能

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The application of graphene-based composites as microwave absorbing materials still has some problems despite optimistic outlook. In this work, sandwich-like Fe, Co, or Ni nanoparticles/reduced graphene oxide (RGO) composites were successfully fabricated via self-assembly and thermal reduction techniques. The characterization results of XRD, Raman spectroscopy, XPS, SEM, TEM, and thermogravimetric analysis showed that the Fe, Co, and Ni nanoparticles were wrapped by flexible RGO nanosheets, showing sandwich structure. Moreover, the loading amounts of Fe, Co, and Ni nanoparticles were further controlled in a wide range. As expected, this unique sandwich structure can not only reduce the agglomeration of magnetic metal nanoparticles and RGO nanosheets, but also improve the impedance matching and the relaxation loss, achieving an attractive microwave absorption performance. For Co/RGO composites, the value of the minimum reflection loss is -50.60 dB, and the effective absorption bandwidth (RL -10 dB) can cover the entire X-band and Ku-band with a low filling ratio of 25%. Moreover, the synthesis process is simple and does not require complicated equipment and a variety of chemical reagents, which are suitable for large-scale production and possible industrial applications. The present work provides a good design and fabricating avenue for new graphene-based nanocomposites.
机译:尽管有乐观的前景,但基于石墨烯基复合材料的应用仍存在一些问题。在这项工作中,通过自组装和热还原技术成功制造了夹心状Fe,CO,CO或Ni纳米颗粒/还原的氧化物(RGO)复合材料。 XRD,拉曼光谱,XPS,SEM,TEM和热重度分析的表征结果表明,Fe,Co和Ni纳米粒子被柔性Rgo纳米液包裹,显示夹层结构。此外,在宽范围内进一步控制Fe,Co和Ni纳米颗粒的装载量。如预期的那样,这种独特的三明治结构不仅可以减少磁性金属纳米粒子和rgo纳米片的凝聚,还可以提高阻抗匹配和弛豫损失,实现有吸引力的微波吸收性能。对于CO / RGO复合材料,最小反射损耗的值为-50.60dB,并且有效的吸收带宽(RL <-10dB)可以覆盖整个X波段和ku波段,填充率为25% 。此外,合成过程简单,不需要复杂的设备和各种化学试剂,适用于大规模生产和可能的工业应用。本工作为新的石墨烯类纳米复合材料提供了良好的设计和制造途径。

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