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Heteronanostructured Co@carbon nanotubes-graphene ternary hybrids: synthesis electromagnetic and excellent microwave absorption properties

机译:异质结构的Co @碳纳米管-石墨烯三元杂化物:合成电磁和优异的微波吸收性能

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摘要

In order to explore high efficiency microwave absorption materials, heteronanostructured Co@carbon nanotubes-graphene (Co@CNTs-G) ternary hybrids were designed and produced through catalytic decomposition of acetylene at the designed temperature (400, 450, 500 and 550 °C) over Co3O4/reduced graphene oxide (Co3O4/RGO). By regulating the reaction temperatures, different CNT contents of Co@CNTs-G ternary hybrids could be synthesized. The investigations indicated that the as-prepared heteronanostructured Co@CNTs-G ternary hybrids exhibited excellent microwave absorption properties, and their electromagnetic and microwave absorption properties could be tuned by the CNT content. The minimum reflection loss (RL) value reached approximately −65.6, −58.1, −41.1 and −47.5 dB for the ternary hybrids synthesized at 400, 450, 500 and 550 °C, respectively. And RL values below −20 dB (99% of electromagnetic wave attenuation) could be obtained over the as-prepared Co@CNTs-G ternary hybrids in the large frequency range. Moreover, based on the obtained results, the possible enhanced microwave absorption mechanisms were discussed in details. Therefore, a simple approach was proposed to explore the high performance microwave absorbing materials as well as to expand the application field of graphene-based materials.
机译:为了探索高效的微波吸收材料,设计并通过在设计温度(400、450、500和550°C)下乙炔的催化分解制备异纳米结构的Co @碳纳米管-石墨烯(Co @ CNTs-G)三元杂化物。在Co3O4 /还原的氧化石墨烯(Co3O4 / RGO)上。通过调节反应温度,可以合成Co @ CNTs-G三元杂化体的不同CNT含量。研究表明,所制备的杂纳米结构Co @ CNTs-G三元杂化物表现出优异的微波吸收性能,其电磁和微波吸收性能可以通过CNT的含量来调节。对于分别在400、450、500和550°C合成的三元杂化物,最小反射损耗(RL)值分别达到约-65.6,-58.1,-41.1和-47.5 dB。在较大的频率范围内,在准备好的Co @ CNTs-G三元杂化体上可以获得低于-20 dB(电磁波衰减的99%)的RL值。此外,基于获得的结果,详细讨论了可能的增强的微波吸收机理。因此,提出了一种简单的方法来探索高性能的微波吸收材料,并扩展石墨烯基材料的应用领域。

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