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首页> 外文期刊>CERAMICS INTERNATIONAL >One-step preparation of CoFe2O4/FeCo/graphite nanosheets hybrid composites with tunable microwave absorption performance
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One-step preparation of CoFe2O4/FeCo/graphite nanosheets hybrid composites with tunable microwave absorption performance

机译:COFE2O4 / FECO / GRAPHITE NANOSHENS的一步制备具有可调谐微波吸收性能的混合复合材料

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摘要

The increasing use of advanced technologies in the civil and military fields has led to electromagnetic pollution. Thus, microwave absorbing materials that can transform electromagnetic energy into other forms of energy have been extensively investigated to limit the electromagnetic pollution. Herein, the CoFe2O4/FeCo/graphite nanosheets (CFG) hybrid composites were prepared by a one-step and facile liquid reduction method and the microwave absorption performances of the composites were investigated. The impedance matching and attenuation ability of the composites could be well tuned by varying the filling ratio of CFG in the matrix. Accordingly, high microwave absorption performances could be achieved. At a filling ratio of 50 wt% (CFG-50), a maximum reflection loss of - 54.3 dB at a thin thickness of 1.2 mm and an effective absorption bandwidth of 4.08 GHz at a thin thickness of 1.3 mm were achieved. Notably, in the thickness range of 1.2-5.5 mm, the effective absorption bandwidth reached up to 15.2 GHz (2.8-18 GHz), covering the entire C, X, and Ku bands. The excellent microwave absorption properties were attributed to the moderate impedance matching and attenuation capacity caused by the dielectric loss, magnetic loss, multiple reflection, and scattering. The attractive features of CFG-50: remarkable absorption, broad bandwidth, low thickness, and fast preparation make it highly suitable for practical microwave absorbing applications.
机译:在民事和军事领域的高级技术越来越多地利用导致电磁污染。因此,已经广泛地研究了可以将电磁能转变为其他形式能量的微波吸收材料以限制电磁污染。这里,通过单步和容易液还原方法制备CoFe2O 4 / FeCo /石墨纳米片(CFG)杂化复合材料,并研究复合材料的微波吸收性能。通过改变基质中CFG的填充率,可以通过改变CFG的填充率来调节复合材料的阻抗匹配和衰减能力。因此,可以实现高微波吸收性能。以50wt%(CFG-50)的填充率为50wt%,实现了薄厚度为1.2mm的54.3dB的最大反射损失,并且在薄厚度为1.3mm的4.08GHz的有效吸收带宽。值得注意的是,在1.2-5.5mm的厚度范围内,有效的吸收带宽达到高达15.2GHz(2.8-18GHz),覆盖整个C,X和KU带。优异的微波吸收性能归因于由介电损耗,磁力损失,多次反射和散射引起的中等阻抗匹配和衰减容量。 CFG-50的有吸引力的特点:显着的吸收,宽带宽,低厚度和快速制备使其适用于实际微波吸收应用。

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