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Microwave Synthesis of Co-Ni Ferrite/Graphene Nanocomposite for Microwave Absorption

机译:微波合成Co-Ni铁氧体/石墨烯纳米复合物用于微波吸收

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As the absorbing material composed of sole carbon is difficult to meet the comprehensive requirements of microwave applications, preparation of carbonaceous nanocomposite materials becomes an effective method to increase microwave absorption properties. In this study, a novel nanocomposite composed of Co-Ni ferrite and graphene was synthesized via a simple and rapid microwave hydrothermal method in just a few minutes. It was demonstrated that the minimum microwave reflection loss of the composite of 3 mm thickness with a low filling ratio (20 wt%) reached -13.1 dB at 17.2 GHz with an effective absorption band-width of 3.1 GHz. The good performance of the composite was believed to be a result of high dielectric loss of graphene associated with a multi-dielectric relaxation process and magnetic loss of the ferrite mainly originated from natural ferromagnetic resonance.
机译:由于由唯一碳组成的吸收材料难以满足微波应用的综合要求,碳质纳米复合材料的制备成为增加微波吸收性能的有效方法。在该研究中,仅在几分钟内通过简单且快速的微波水热法合成了由CO-Ni铁氧体和石墨烯组成的新型纳米复合材料。结果证明,具有低填充率(20wt%)的3mm厚度的复合材料的最小微波反射损失达到-13.1dB,17.2GHz,有效吸收带宽为3.1GHz。据信复合材料的良好性能是与多介电弛豫工艺相关的石墨烯的高介电损耗,并且主要源于天然铁磁共振的铁素体的磁力损失。

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