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Preparation and Electromagnetic Characteristics of Flake Shaped Carbonyl Iron-Zinc Oxide Nanocomposites

机译:片状羰基铁-氧化锌纳米复合材料的制备及电磁性能

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摘要

Flake shaped carbonyl iron-zinc oxide nanocomposites (FCI-ZnO) were prepared via two-steps high-energy ball-milling process method in hexane solution under mild conditions. The electromagnetic characteristics include electromagnetic parameters, static magnetism properties and microwave absorption properties have been also investigated in detail. The results showed that the size, morphology and electromagnetic characteristics of composites can be controlled by adjusting the addition of ZnO during the preparation. And more importantly, this method can be used to improve the impedance matching level of microwave absorption properties, the reflection loss of the as-prepared composite is below -20 dB (99% absorption) at 12~14 GHz with a coating layer thickness of 2.0 mm. These results provide a wide insight for the flake shaped structure FCI-ZnO as desirable materials for the fabrication of microanoscale functional in the application of electromagnetic wave.
机译:在温和条件下,通过两步高能球磨法在己烷溶液中制备鳞片状羰基铁-氧化锌纳米复合材料(FCI-ZnO)。还详细研究了电磁特性,包括电磁参数,静磁特性和微波吸收特性。结果表明,通过调节制备过程中ZnO的添加量,可以控制复合材料的尺寸,形貌和电磁性能。更重要的是,该方法可用于改善微波吸收特性的阻抗匹配水平,所制备复合材料在12〜14 GHz下的反射损耗低于-20 dB(吸收率99%),涂层厚度为2.0毫米这些结果为片状结构FCI-ZnO提供了广泛的见识,作为在电磁波应用中制造微/纳米级功能的理想材料。

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