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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Broadband and strong microwave absorption of Fe/Fe3C/C core-shell spherical chains enhanced by dual dielectric relaxation and dual magnetic resonances
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Broadband and strong microwave absorption of Fe/Fe3C/C core-shell spherical chains enhanced by dual dielectric relaxation and dual magnetic resonances

机译:通过双介电弛豫和双磁共振的Fe / Fe3C / C核心壳球链的宽带和强微波炉

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摘要

By utilizing a simple calcination process in the presence of Fe nanofibers (NFs) and benzene under N-2, we synthesized large amounts of Fe@Fe3C@C core-shell spherical chains (CSSCs) comprising soft magnetic (Fe@Fe3C) NFs as cores and disordered C as shells. Varying the benzene volume from 1 mL to 4 mL conveniently modulated the C/Fe atom ratio over the range of 0-0.283. The composition-dependent static magnetic and microwave absorption properties of the Fe@Fe3C@C CSSCs were systemically investigated. The Fe@Fe3C@C CSSCs with a C/Fe atom ratio of 0.166-0.283 exhibited excellent microwave absorption properties, having stronger absorption and broader bandwidth than other absorbers. An optimal reflection loss (R-L) value of -58.0 dB was observed at 8.68 GHz under an absorber thickness of 2.4 mm. The absorption bandwidth (R-L = -20 dB, 99% absorption) also reached as high as 16 GHz, which corresponded to the absorber thickness of 1.2-8.0 mm. The mechanism underlying the enhancement in microwave absorption was determined to be the synergy of dual dielectric relaxation, dual magnetic resonances, high attenuation, and good impedance matching caused by the 1D structure, core-shell structure, and heterostructure. The high microwave absorption capacity and wide absorption bandwidth demonstrated the promising practical applications of the Fe@Fe3C@C CSSCs. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过利用一个简单的煅烧过程中的Fe纳米纤维(NFS)和苯的N-2下存在,我们合成了大量的Fe @的Fe3C @ C_核壳球形链(CSSCs),包括软磁性(铁@的Fe3C)NFS作为核心和无序的C作为炮弹。改变苯体积从1mL至4mL的方便调制过的0-0.283的范围中的C /铁原子比率。中的Fe @的Fe3C @ C_ CSSCs的组成依赖静态磁场和微波吸收性能进行了系统研究。中的Fe @的Fe3C @ C_ CSSCs具有0.166-0.283一个C / Fe的原子比显示出优异的微波的吸收性能,具有较强的吸收和比其它吸收剂更宽的带宽。在8.68千兆赫,观察到2.4毫米的吸收体厚度下的最佳的反射损耗(R-L)的-58.0 dB值。的吸收带宽(R-L&LT = -20分贝,99%的吸收)也达到了高达16千兆赫,这对应于1.2-8.0毫米的吸收体的厚度。测定在微波吸收增强的基础的机制是双重介电弛豫,双磁共振,高衰减和良好的阻抗匹配引起的1D结构,核 - 壳结构,异质结构的协同作用。高的微波吸收能力和宽的吸收带宽证明中的Fe @的Fe3C @ C_ CSSCs的有前途的实际应用。 (c)2018年elestvier b.v.保留所有权利。

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