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首页> 外文期刊>CERAMICS INTERNATIONAL >Construction of sandwich-like NiCo2O4/Graphite nanosheets/NiCo2O4 heterostructures for a tunable microwave absorber
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Construction of sandwich-like NiCo2O4/Graphite nanosheets/NiCo2O4 heterostructures for a tunable microwave absorber

机译:用于可调谐微波吸收器的夹心状Nico2O4 /石墨纳米片/ Nico2O4异质结构

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Currently, microwave absorbers have received much attention in the military and civil fields on account of electromagnetic radiation and stealth technology. Herein, NiCo2O4/Graphite nanosheets/NiCo2O4 (GNC) hybrid composites with sandwich-like heterostructures were carefully constructed using a hydrothermal method and subsequent annealing process. The morphology and microwave absorption performance are investigated by changing the additive amount of GNS to regulate the ratio of GNS/NiCo2O4. The results show that varying the ratio of GNS/NiCo2O4 has a tiny effect on its structure, nanoband-like NiCo2O4 with the width of 100 nm at-taches to the surface of GNS, while it can well tune the microwave absorption properties. When the additive amount of GNS increases from 0.02 g to 0.04 g, the microwave absorption performance first improves and subsequently worsens, which is attributed to the effect of impedance matching and attenuation capacity that resulted from conducive loss, interface polarization, and charge polarization. When the additive amount of GNS is 0.03 g, the maximum reflection loss and effective absorption bandwidth of GNC-2 composites are - 47.01 dB and 2.98 GHz (14.51-17.49 GHz) with a thickness of 1 mm. Our results can provide more information for the design and manufacture of composites based on graphite nanosheets as high-performance microwave absorbers.
机译:目前,微波吸收剂由于电磁辐射和隐形技术而言,在军事和民用领域得到了很多关注。这里,使用水热法和随后的退火工艺仔细构建与夹心状异质结构的NicO 2 O 4 /石墨纳米蛋白酶/ NicO 2 O 4(GNC)杂化复合材料。通过改变GNS的添加量来调节GNS / NiCO 2 O 4的比例来研究形态和微波吸收性能。结果表明,改变GNS / Nico2O4的比率对其结构的微小效应,纳米抗碱的镍氢NicO 2 O 4,宽度为GNS的表面,宽度为100nm at-taches,同时可以很好地调整微波吸收性能。当GNS的添加量从0.02g增加到0.04g时,微波吸收性能首先改善并随后归因于由有利于损耗,界面极化和电荷极化产生的阻抗匹配和衰减容量的效果。当GNS的添加量为0.03g时,GNC-2复合材料的最大反射损耗和有效吸收带宽为-47.01dB和2.98GHz(14.51-17.49GHz),厚度为1mm。我们的结果可以为基于石墨纳米片作为高性能微波吸收器的设计和制造复合材料的设计和制造提供更多信息。

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