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Fabrication and microwave absorption properties of carboncoated cementite nanocapsules

机译:碳包覆渗碳体纳米胶囊的制备及微波吸收性能

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By utilizing a simple and low-cost arc-discharge method in either liquid nitrogen or ethanol at ambient temperature and pressure, carbon-coated cementite (Fe_3C) nanocapsules, with size ranges of 10-60 nm and 10-20 nm, respectively, have been synthesized on a large scale. The Fe_3C/C nanocapsules synthesized in different media possess similar permeability but different permittivity, which results from the different defect amounts within the carbon shell. It has been found that the as-prepared products exhibit different electromagnetic wave absorption abilities: for the ones prepared in liquid nitrogen, the optimal reflection loss is above -10 dB in the range of 1-18 GHz with the thickness ranging from 1 to 10 mm; meanwhile, for those fabricated in ethanol, the reflection loss could be below -20 dB within the thickness range of 1.5-2.4 mm in the frequency range of 10-15 GHz, and reach -38 dB at a thickness of 1.9 mm with a matching frequency of 12.9 GHz. This indicates that the nanocapsules prepared in ethanol exhibit good electromagnetic wave absorption properties. These results provide a new way to fabricate carbon-coated Fe_3C nanocapsules with the ability of electromagnetic wave absorption.
机译:通过在环境温度和压力下在液氮或乙醇中利用简单且低成本的电弧放电方法,碳包覆渗碳体(Fe_3C)纳米胶囊的尺寸范围分别为10-60 nm和10-20 nm大规模合成。在不同介质中合成的Fe_3C / C纳米胶囊具有相似的磁导率但介电常数不同,这是由于碳壳中的缺陷量不同所致。已经发现,所制备的产品表现出不同的电磁波吸收能力:对于在液氮中制备的产品,其最佳反射损耗在1-18 GHz范围内,厚度范围为1至10时高于-10 dB。毫米;同时,对于用乙醇制造的反射器,在10-15 GHz频率范围内,在1.5-2.4 mm厚度范围内,反射损耗可能低于-20 dB,而在1.9 mm厚度下,反射损耗可能达到-38 dB,频率为12.9 GHz。这表明在乙醇中制备的纳米胶囊表现出良好的电磁波吸收特性。这些结果为制备具有电磁波吸收能力的碳包覆的Fe_3C纳米胶囊提供了一种新途径。

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