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Broadband Microwave Absorbing Composites with a Multi-Scale Layered Structure Based on Reduced Graphene Oxide Film as the Frequency Selective Surface

机译:以氧化石墨烯薄膜为频率选择表面的多尺度层状宽带吸波复合材料

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摘要

A broadband microwave absorbing composite with a multi-scale layered structure is proposed, in which a reduced graphene oxide (RGO) film sandwiched between two layers of epoxy glass fiber laminates serves as the frequency selective surface (FSS). RGO films with the desired electrical properties were synthesized directly by hydrothermal reaction, vacuum filtration, and heat treatment without subsequent processing. With the novel layer-by-layer structure ranging from micro to macro scale, the optimized composite exhibits excellent microwave absorption performance with a total thickness of 3.2 mm. Its reflection coefficient (RC) is less than −10 dB in the entire X and Ku band, reaching a minimum value of −32 dB at 10.2 GHz and an average RC of −22.8 dB from 8 to 18 GHz. Enhanced microwave absorption of the composites is achieved through the optimization of layer thickness in the sandwich structure to promote destructive interference. Improved impedance matching by the introduction of FSS along with the polarization and conduction loss of layered graphene films also contribute to the increased absorption.
机译:提出了一种具有多尺度层状结构的宽带微波吸收复合材料,其中夹在两层环氧玻璃纤维层压板之间的还原氧化石墨烯(RGO)膜用作频率选择表面(FSS)。通过水热反应,真空过滤和热处理直接合成具有所需电性能的RGO膜,无需后续处理。优化的复合材料具有从微观到宏观的新型逐层结构,具有3.2 mm的总厚度,具有出色的微波吸收性能。它的反射系数(RC)在整个X和Ku频段均小于-10 dB,在10.2 GHz时达到最小值-32 dB,在8至18 GHz时平均RC为-22.8 dB。通过优化夹层结构中的层厚度以促进相消干涉,可以增强复合材料的微波吸收能力。通过引入FSS改进的阻抗匹配以及层状石墨烯薄膜的极化和传导损耗也有助于增加吸收。

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