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Enhanced Microwave Absorption Bandwidth in Graphene-Encapsulated Iron Nanoparticles with Core–Shell Structure

机译:具有核壳结构的石墨烯包裹的铁纳米颗粒中增强的微波吸收带宽

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摘要

Graphene-encapsulated iron nanoparticles (Fe(G)) hold great promise as microwave absorbers owing to the combined dielectric loss of the graphene shell and the magnetic loss of the ferromagnetic metal core. Transmission electron microscopy (TEM) revealed transition metal nanoparticles encapsulated by graphene layers. The microwave electromagnetic parameters and reflection loss (R) of the Fe(G) were investigated. Graphene provided Fe(G) with a distinctive dielectric behavior via interfacial polarizations taking place at the interface between the iron cores and the graphene shells. The R of Fe(G)/paraffin composites with different Fe(G) contents and coating thickness was simulated according to the transmit-line theory and the measured complex permittivity and permeability. The Fe(G)/paraffin composites showed an excellent microwave absorption with a minimum calculated R of −58 dB at 11 GHz and a 60 wt% Fe(G) loading. The composites showed a wide bandwidth (the bandwidth of less than −10 dB was about 11 GHz). The R of composites with 1–3 mm coating thickness was measured using the Arch method. The absorption position was in line with the calculated results, suggesting that the graphene-coated iron nanoparticles can generate a suitable electromagnetic match and provide an intense microwave absorption. Excellent Fe(G) microwave absorbers can be obtained by selecting optimum layer numbers and Fe(G) loadings in the composites.
机译:石墨烯包裹的铁纳米颗粒(Fe(G))作为微波吸收剂具有广阔的前景,这是由于石墨烯壳的介电损耗和铁磁金属芯的磁损耗共同造成的。透射电子显微镜(TEM)显示了被石墨烯层包裹的过渡金属纳米粒子。研究了Fe(G)的微波电磁参数和反射损耗(R)。石墨烯通过在铁芯和石墨烯壳之间的界面发生界面极化,为Fe(G)提供了独特的介电性能。根据传输线理论和测得的复介电常数和磁导率,模拟了不同Fe(G)含量和涂层厚度的Fe(G)/石蜡复合材料的R。 Fe(G)/石蜡复合材料表现出出色的微波吸收性能,在11 GHz频率下的最小计算R为-58 dB,Fe(G)负载为60 wt%。复合材料显示出较宽的带宽(小于-10 dB的带宽约为11 GHz)。使用Arch方法测量涂层厚度为1-3 mm的复合材料的R。吸收位置与计算结果一致,表明石墨烯包覆的铁纳米颗粒可以产生合适的电磁匹配并提供强烈的微波吸收。通过选择最佳层数和复合材料中的Fe(G)含量,可以获得出色的Fe(G)微波吸收剂。

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