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Excellent microwave absorption properties of the h-BN-GO-Fe3O4 ternary composite

机译:H-BN-Go-Fe3O4三元复合材料的优异微波吸收性能

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摘要

A ternary composite of hexagonal boron nitride nanoplates-graphene oxide-Fe3O4 microplates (h-BN-GO-Fe3O4) as a novel type of electromagnetic (EM) microwave absorbing material was synthesized via a facile and efficient strategy. The composite has a layered microstructure with interlayer voids. The GO layers and h-BN nanoplates can significantly reduce the aggregation of the Fe3O4 microplates to reduce conductivity. The overlapped Fe3O4 microplates and the embedded h-BN nanoplates result in voids which further increase the resistivity of the material and suppress eddy current effectively. The hierarchically multicomponent structure is in favor of improving the impedance matching and results in excellent EM microwave absorbing performance. An effective absorption bandwidth (RL -10 dB) of 12.2 GHz is achieved when the absorber thicknesses range from 2.0 to 5.0 mm. The EM microwave absorption mechanism of the composite is discussed using a complex thickness model and the quarter-wavelength cancellation theory. It is found that the remarkable microwave absorption performances can be ascribed to the joint outcome of the interfacial cancellation of the incident and reflected EM microwaves at the air-material interface and the dissipation of the microwaves via magnetic loss, multiple reflections and scattering in the material. This research demonstrates void containing composites as an efficient approach for fabricating broad-bandwidth and efficient EM microwave absorbers.
机译:通过容易和有效的策略合成了作为新型电磁(EM)微波吸收材料的六方氮化硼纳米氮烯纳米片 - 石墨烯-FI3O4微压板(H-BN-GO-FE3O4)的三元组合。复合材料具有层状微观结构,具有层间空隙。 GO层和H-BN纳米板可以显着降低Fe3O4微孔板的聚集以降低电导率。重叠的Fe3O4微孔板和嵌入的H-BN纳米板导致空隙,进一步提高了材料的电阻率并有效地抑制涡流。等级多组分结构有利于改善阻抗匹配并导致优异的EM微波吸收性能。当吸收体厚度范围为2.0至5.0mm时,实现了12.2GHz的有效吸收带宽(RL和LT1)。使用复杂的厚度模型和四分之一波长取消理论讨论复合材料的EM微波吸收机理。结果发现,显着的微波吸收性能可以归因于入射的界面消除的关节结果,并反映在空气材料界面处的微波和通过磁力损失,多次反射和散射在材料中耗散微波。该研究表明,空隙含有复合材料作为制造宽带宽和高效的EM微波吸收器的有效方法。

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