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1D Magnetic Materials of Fe3O4 and Fe with High Performance of Microwave Absorption Fabricated by Electrospinning Method

机译:电纺丝法制备高性能微波吸收Fe3O4和Fe的一维磁性材料

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摘要

Fe3O4 and Fe nanowires are successfully fabricated by electrospinning method and reduction process. Wiry microstructures were achieved with the phase transformation from α-Fe2O3 to Fe3O4 and Fe by partial and full reduction, while still preserving the wire morphology. The diameters of the Fe3O4 and Fe nanowires are approximately 50–60 nm and 30–40 nm, respectively. The investigation of microwave absorption reveals that the Fe3O4 nanowires exhibit excellent microwave absorbing properties. For paraffin-based composite containing 50% weight concentration of Fe3O4 nanowires, the minimum reflection loss reaches −17.2 dB at 6.2 GHz with the matching thickness of 5.5 mm. Furthermore, the calculation shows that the modulus of the ratio between the complex permittivity and permeability |ε/μ| is far away from unity at the minimum reflection loss point, which is quite different from the traditional opinions.
机译:通过静电纺丝和还原工艺成功地制备了Fe3O4和Fe纳米线。通过部分和全部还原,从α-Fe2O3到Fe3O4和Fe的相变,获得了微细的组织,同时仍保持了焊丝的形态。 Fe3O4和Fe纳米线的直径分别约为50-60 nm和30-40 nm。微波吸收的研究表明,Fe 3 O 4纳米线表现出优异的微波吸收特性。对于包含重量百分比为50%的Fe3O4纳米线的石蜡基复合材料,在6.2 atGHz处的最小反射损耗达到-17.2 dB,匹配厚度为5.5 mm。此外,计算表明复介电常数与磁导率之比的模量|ε/μ|。在最小反射损耗点处距离统一很远,这与传统观点大不相同。

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