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Octahedron Fe3O4 particles supported on 3D MWCNT/graphene foam: In-situ method and application as a comprehensive microwave absorption material

机译:负载在3D MWCNT /石墨烯泡沫上的八面体Fe3O4颗粒:原位方法和作为综合微波吸收材料的应用

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In this work, we used in-situ method to directly prepare a novel structure consisting of well-distributed octahedron Fe3O4 particles, porous graphene foam (GF) and fibrous multiwalled carbon nanotube (MWCNT): started with an intense stir to anchor Fe3+ on the surfaces of graphene oxide and oxided MWCNT, followed by solvothermal reaction to synthesize 3D lightweight Fe3O4/MWCNT/GF hybrids with high performance microwave absorption (MA). The maximum Reflection Loss (RL) value of -35.30 dB and 9.01 GHz bandwidth with RL below -10 dB detected with the thickness of 3.0 mm are achieved by Fe3O4/MWCNT/GF with an ultralow bulk density of 5.0 mg cm(-3), of which the Specific Microwave Absorption Performance is much higher than most available MA materials reported. Impedance matching, high loss characteristic, interfacial polarization and polarization relaxation significantly improve MA properties, which serves as a guide for fabricating comprehensive MA materials enjoying numerous advantages of high RL value, broad bandwidth, low density and thin thickness. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们使用原位方法直接制备了一种由分布均匀的八面体Fe3O4颗粒,多孔石墨烯泡沫(GF)和纤维多壁碳纳米管(MWCNT)组成的新型结构:首先剧烈搅拌将Fe3 +锚定在表面氧化石墨烯和氧化的MWCNT,然后进行溶剂热反应,以合成具有高性能微波吸收(MA)的3D轻质Fe3O4 / MWCNT / GF杂化物。 Fe3O4 / MWCNT / GF具有5.0 mg cm(-3)的超低堆积密度,可实现-35.30 dB的最大反射损耗(RL)值和RL低于-10 dB且厚度为3.0 mm的9.01 GHz带宽,其比微波吸收性能比报道的大多数可用MA材料高得多。阻抗匹配,高损耗特性,界面极化和极化弛豫显着改善了MA性能,这为制造具有高RL值,宽带宽,低密度和薄厚度等众多优点的综合MA材料提供了指导。 (C)2017 Elsevier B.V.保留所有权利。

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