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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 >Enhanced microwave absorption properties of core double-shell type Fe@C@BaTiO3 nanocapsules
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Enhanced microwave absorption properties of core double-shell type Fe@C@BaTiO3 nanocapsules

机译:核心双壳型Fe @ C @ BaTiO3纳米胶囊的增强微波吸收性能

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摘要

Microwave absorptions properties of Fe@C@BaTiO3 nanocapsules were investigated in the 1-18 GHz frequency range. High resolution transmission electron microscopy studies reveal that the as-prepared Fe@C@BaTiO3 samples are comprised of the Fe nanoparticles as the core, C and BaTiO3 as middle and outside shells, respectively. Enhanced relative permittivity made the core double-shell Fe@C@BaTiO3 nanocapsules absorbent acquire more efficient complementarities than that of the core single shell Fe@C nanocapsules absorbent between the dielectric loss and magnetic loss. As a result, the microwave absorption properties of Fe@C@BaTiO3-parrafin composites are superior to those of Fe@C-parrafin composites with the improved 1.3-2.0 times of RL values below 20 dB at absorbent thicknesses from 1.35 to 7.00 mm. The optimal reflection loss (RL) of Fe@C@BaTiO3-parrafin composites are 40.2 dB at 8.14 GHz with a thickness of 2.24 mm and the absorption bandwidth of those below 10 dB is 8.4 GHz with only absorbent thicknesses of 1.7-2.0 mm. Moreover, the minimum RL of Fe@C@BaTiO3-parrafin composite shifts to the lower frequency with a thickness range of 1.35-7.00 mm, compared with that of Fe@C-parrafin composite. Furthermore, it is worthy noting that the minimum RL of Fe@C@BaTiO3-parrafin composite is below 20 dB in L-S wave band, which is far superior to that of Fe@C-parrafin composite at the same absorbent layer thicknesses. These results show that the core double-shell type Fe@C@BaTiO3 nanocapsules are great potential microwave absorbents for practical applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了Fe @ C @ BaTiO3纳米胶囊在1-18 GHz频率范围内的微波吸收特性。高分辨率透射电镜研究表明,所制备的Fe @ C @ BaTiO3样品分别以Fe纳米颗粒为核,C和BaTiO3作为中壳和外壳。相对介电常数的提高使双壳式Fe @ C @ BaTiO3纳米胶囊吸收剂在介电损耗和磁损耗方面比单核Fe @ C纳米胶囊吸收剂获得了更有效的互补性。结果,Fe @ C @ BaTiO3-石蜡复合材料的微波吸收性能优于Fe @ C @石蜡复合材料的微波吸收性能,在1.35至7.00 mm的吸收层厚度下,RL值在20 dB以下时提高了1.3-2.0倍。 Fe @ C @ BaTiO3-parrafin复合材料的最佳反射损耗(RL)在8.14 GHz时为40.2 dB,厚度为2.24 mm,在10 dB以下时,其吸收带宽为8.4 GHz,仅吸收剂厚度为1.7-2.0 mm。此外,与Fe @ C-Parrafin复合材料相比,Fe @ C @ BaTiO3-parrafin复合材料的最小RL移至较低的频率,厚度范围为1.35-7.00 mm。此外,值得注意的是,Fe @ C @ BaTiO3-parrafin复合材料的最小RL在L-S波段低于20 dB,这在相同吸收层厚度下远远优于Fe @ C @ parrafin复合材料的最小RL。这些结果表明,核芯双壳型Fe @ C @ BaTiO3纳米胶囊在实际应用中具有巨大的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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