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Graphene oxide-ferrite hybrid framework as enhanced broadband absorption in gigahertz frequencies

机译:石墨烯-铁氧体杂化骨架可提高千兆赫频率的宽带吸收

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摘要

The present investigation is focused on the in-situ synthesis of Graphene oxide (GO)-ferrite nanoparticle hybrid framework by gel-combustion method followed by fabrication of homogeneous, structurally stable thin (~100–120 μm) hybrid-polyurethane coating on a metallic aluminum substrate and its application on the properties of broadband absorption over the microwave frequency region. Microstructure studies of hybrid materials illustrated that small sized ferrite nanoparticles (~17 nm) are grafted on and through the graphene layers, which forms a homogeneous coating thereby. The hybrid-nanocomposite coating demonstrated superior broadband absorption properties with absorptivity higher than 90% throughout a bandwidth of ~6 GHz, and moreover, it was found that with increased loading of GO in the nanocomposite, the bandwidth range of absorption frequency increases with enhanced absorptivity. The real part and imaginary part of the surface impedance values of the coating was obtained as 377 Ω and 0 Ω, respectively, which imply that the free-space impedance of the hybrid-nanocomposite coating is matching correctly. The nanocomposite coating showed ultra-high absorptivity over the frequency band of 8–12 GHz, which has numerous practical applications as radar absorbing materials (RAM), stealth technology, electromagnetic shielding, and radiated electromagnetic interference (EMI) management in onboard spacecraft and many more.
机译:本研究的重点是通过凝胶燃烧法原位合成氧化石墨烯(GO)-铁氧体纳米颗粒杂化骨架,然后在金属上制造均匀,结构稳定的薄(〜100–120μm)杂化聚氨酯涂层铝基板及其在微波频率范围内宽带吸收特性的应用。混合材料的微观结构研究表明,小尺寸的铁氧体纳米粒子(〜17 nm)被接枝到石墨烯层上并穿过石墨烯层,从而形成均匀的涂层。杂化-纳米复合涂层表现出优异的宽带吸收性能,在〜6 GHz的整个带宽内吸收率均高于90%,此外,发现随着纳米复合材料中GO负载的增加,吸收频率的带宽范围随着吸收率的提高而增加。 。涂层表面阻抗值的实部和虚部分别为377Ω和0Ω,这表明杂化纳米复合材料涂层的自由空间阻抗正确匹配。纳米复合涂层在8–12 GHz的频带上显示出超高的吸收率,具有许多实际应用,如雷达吸收材料(RAM),隐身技术,电磁屏蔽和机载航天器中的辐射电磁干扰(EMI)管理,以及许多更多。

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