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CoxNi100-x nanoparticles encapsulated by curved graphite layers: controlled in situ metal-catalytic preparation and broadband microwave absorption

机译:通过弯曲CoxNi100-x纳米颗粒封装石墨层:就地控制metal-catalytic准备和宽带微波吸收

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摘要

We report a one-step approach for preparing dispersive CoxNi100-x nanoparticles completely encapsulated by curved graphite layers. The nanoparticles were prepared by evaporating Co-Ni alloys and the shell of graphite layers was formed by in situ metal-catalytic growth on the surface of nanoparticles whose layer number was controlled by tuning the Co content of the alloys. By modulating the composition of the magnetic core and the layer number of the shell, the magnetic and dielectric properties of these core/shell structures are simultaneously optimized and their permeability and permittivity were improved to obtain the enhanced electromagnetic match. As a result, the bandwidth of reflection loss (RL) exceeding -20 dB (99% absorption) of the nanocapsules is 9.6 GHz for S1, 12.8 GHz for S2, 13.5 GHz for S3 and 14.2 GHz for S4. The optimal RL value reaches -53 dB at 13.2 GHz for an absorber thickness of 2.55 mm. An optimized impedance match by controlling the growth of the core and shell is responsible for this extraordinary microwave absorption.
机译:我们报告一个一步方法准备完全分散CoxNi100-x纳米颗粒弯曲的石墨层封装。纳米粒子被蒸发Co-Ni准备合金和石墨的壳层由原位metal-catalytic增长上纳米粒子表面的层数通过调优的公司内容控制合金。磁芯和壳层的层数,这些的磁场和介电性能同时核/壳结构优化和磁导率和介电常数改善获得增强的电磁匹配。的反射损失(RL)超过-20 dB (99%nanocapsules是9.6 GHz的吸收)S1, S2 12.8 GHz, S3和14.2 GHz 13.5 GHzS4。13.2 GHz的吸收体厚度2.55毫米。通过控制优化的阻抗匹配增长的核心和壳牌负责这种非凡的微波吸收。

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