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首页> 外文期刊>RSC Advances >Fabrication and enhanced microwave absorption properties of Al2O3 nanoflake-coated Ni core-shell composite microspheres
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Fabrication and enhanced microwave absorption properties of Al2O3 nanoflake-coated Ni core-shell composite microspheres

机译:Al2O3纳米片包覆Ni核壳复合微球的制备及增强的微波吸收性能

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摘要

Core-shell composite microspheres with Ni cores and Al2O3 nanoflake shells have been successfully fabricated by the hydrothermal deposition method. The electromagnetic parameters of the Ni microspheres and Ni/Al2O3 composites are measured by a coaxial line method. The tangent losses for the Ni/Al2O3 composite are larger than those of the Ni. A significant enhancement of electromagnetic absorption (EMA) performance of Ni microspheres coated by the alumina shells was achieved over the 1-18 GHz. The reflection loss (RL) less than -10 dB of the composite was obtained over 7.5-18.0 GHz by tuning an appropriate sample thickness between 1.3 and 2.2 mm, and an optimal RL of -33.03 dB was obtained at 9.2 GHz with a thin absorber thickness of 2.0 mm. The coating of the dielectric alumina shell significantly enhanced the microwave absorption performance due to the enhancement of interface polarization between the metals and dielectric interfaces, the synergetic effect between the dielectric loss and magnetic loss and unique flake-like dielectric alumina.
机译:采用水热沉积法成功地制备了具有Ni核和Al2O3纳米片壳的核-壳复合微球。通过同轴线法测量Ni微球和Ni / Al2O3复合材料的电磁参数。 Ni / Al2O3复合材料的切线损耗大于Ni。在1-18 GHz范围内,通过氧化铝壳包覆的Ni微球的电磁吸收(EMA)性能得到了显着提高。在7.5-18.0 GHz范围内,通过将合适的样品厚度调节在1.3至2.2 mm之间,可以使复合材料的反射损耗(RL)小于-10 dB,在9.2 GHz的条件下,使用薄吸收层可以得到-33.03 dB的最佳RL厚度为2.0毫米。由于增强了金属与介电界面之间的界面极化,介电损耗与磁损耗之间的协同效应以及独特的片状介电氧化铝,介电氧化铝外壳的涂层显着提高了微波吸收性能。

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