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Synthesis and excellent electromagnetic wave absorption properties of parallel aligned FeCo@C core-shell nanoflake composites

机译:平行排列的FeCo @ C核壳纳米片复合材料的合成及优异的电磁波吸收性能

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Soft magnetic FeCo@C nanoflakes were prepared by a simple anoxic annealing technique. The crystalline structure, morphology, and microstructure were systematically characterized. The frequency-dependent electromagnetic and absorbing properties of the nanoflake paraffin composites were investigated in the 0.1-18 GHz frequency range. The rotational orientation of the composite in an applied magnetic field was performed to make the plane of nanoflakes parallel to each other. The measurement results showed that both the complex permeability and complex permittivity of the FeCo@C composite were enhanced after orientation. The calculated absorption properties showed that the orientation plays an important role in decreasing the absorber thickness and increasing the absorption performance. For the oriented FeCo@C nanoflake paraffin composite, the maximum reflection loss of -48.2 dB at 2.1 mm thickness and the effective absorption with RL < -10 dB from 2.5 to 12 GHz at thickness ranging from 1.5 to 4.0 mm were obtained.
机译:通过简单的缺氧退火技术制备了软磁FeCo @ C纳米片。系统地表征了晶体结构,形态和微观结构。在0.1-18 GHz频率范围内研究了纳米片石蜡复合材料的频率依赖性电磁和吸收性能。进行复合材料在施加磁场中的旋转取向,以使纳米薄片的平面彼此平行。测量结果表明,定向后,FeCo @ C复合材料的复磁导率和复介电常数均提高。计算得出的吸收性能表明,取向在减小吸收体厚度和提高吸收性能方面起着重要作用。对于取向的FeCo @ C纳米片状石蜡复合材料,在2.1 mm厚度下最大反射损耗为-48.2 dB,在2.5mm至12 GHz的RL <-10 dB下有效厚度为1.5mm至4.0mm时有效吸收。

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