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Synthesis, Characterization and Electromagnetic Properties of SnO-coated FeNi Alloy Nanocapsules

机译:SnO包覆的FeNi合金纳米胶囊的合成,表征及电磁性能

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摘要

SnO-coated FeNi alloy nanocapsules have been synthesized by an arc-discharge method. High-resolution transmission electron microscopy and x-ray photoelectron spectroscopy analysis show that the nanocapsules have a shell/core structure with FeNi alloy nanoparticles as the core and amorphous SnO as the shell. Dielectric relaxation of SnO shell and the interfacial relaxation between SnO shell and FeNi core lead to the dual nonlinear dielectric resonance. The natural resonance in the SnO-coated FeNi nanocapsules shifts to 14.0 GHz. Reflection loss (RL) reaches -46.1 dB at 14.8 GHz for a matching thickness of 1.95 mm, while it exceeds-20 dB over the 13.6 -16.7 GHz range and it exceeds -10 dB in the whole Ku-band (12.4-18 GHz). In addition, the optimal RL values at 5.0-7.6 GHz with the absorbing thickness of 3.4-5.0 mm just exhibit a slight fluctuation.
机译:SnO包覆的FeNi合金纳米胶囊是通过电弧放电法合成的。高分辨率透射电子显微镜和X射线光电子能谱分析表明,纳米囊具有以FeNi合金纳米颗粒为核,无定形SnO为壳的壳/核结构。 SnO壳的介电弛豫以及SnO壳与FeNi核之间的界面弛豫导致双重非线性介电共振。 SnO包覆的FeNi纳米胶囊中的自然共振移至14.0 GHz。对于1.95 mm的匹配厚度,在14.8 GHz处反射损耗(RL)达到-46.1 dB,而在13.6 -16.7 GHz范围内反射损耗(RL)超过-20 dB,并且在整个Ku频段(12.4-18 GHz)上超过-10 dB )。此外,在5.0-7.6 GHz的最佳RL值以及3.4-5.0 mm的吸收厚度仅表现出轻微的波动。

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