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Shell Thickness-Dependent Microwave Absorption of Core-Shell Fe3O4@C Composites

机译:壳-壳Fe3O4 @ C复合材料的壳厚度依赖性微波吸收

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摘要

Core-shell composites, Fe3O4@C, with 500 nm Fe3O4 microspheres as cores have been successfully prepared through in situ polymerization of phenolic resin on the Fe3O4 surface and subsequent high-temperature carbonization. The thickness of carbon shell, from 20 to 70 nm, can be well controlled by modulating the weight ratio of resorcinol and Fe3O4 microspheres. Carbothermic reduction has not been triggered at present conditions, thus the crystalline phase and magnetic property of Fe3O4 micropsheres can be well preserved during the carbonization process. Although carbon shells display amorphous nature, Raman spectra reveal that the presence of Fe3O4 micropsheres can promote their graphitization degree to a certain extent. Coating Fe3O4 microspheres with carbon shells will not only increase the complex permittivity but also improve characteristic impedance, leading to multiple relaxation processes in these composites, thus the microwave absorption properties of these composites are greatly enhanced. Very interestingly, a critical thickness of carbon shells leads to an unusual dielectric behavior of the core—shell structure, which endows these composites with strong re0ection loss, especially in the high frequency range. By considering good chemical homogeneity and microwave absorption, we believe the as-fabricated Fe3O4{S>C composites can be promising candidates as highly effective microwave absorbers.
机译:通过将酚醛树脂在Fe3O4表面原位聚合并随后进行高温碳化,成功制备了以500 nm Fe3O4微球为核的核壳复合材料Fe3O4 @ C。通过调节间苯二酚和Fe3O4微球的重量比,可以很好地控制碳壳的厚度(20至70 nm)。在当前条件下还没有引发碳热还原,因此在碳化过程中可以很好地保留Fe3O4微粉的结晶相和磁性。尽管碳壳表现出无定形性质,但拉曼光谱表明,Fe3O4微粒的存在可以在一定程度上促进其石墨化程度。用碳壳包覆Fe3O4微球不仅会提高复介电常数,而且会改善特征阻抗,从而导致这些复合材料的多重弛豫过程,从而大大增强了这些复合材料的微波吸收性能。非常有趣的是,临界厚度的碳壳会导致核-壳结构具有异常的介电性能,这使这些复合材料具有很强的反射损耗,尤其是在高频范围内。考虑到良好的化学均质性和微波吸收性,我们认为制成的Fe3O4 {S> C复合材料可以作为高效微波吸收剂有希望的候选者。

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