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首页> 外文期刊>Journal of magnetism and magnetic materials >Promoting the microwave absorption characteristics in the X band using core-shell structures of Cu metal particles/PPy and hexaferrite/PPy
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Promoting the microwave absorption characteristics in the X band using core-shell structures of Cu metal particles/PPy and hexaferrite/PPy

机译:利用Cu金属粒子/ PPy和六方铁氧体/ PPy的核-壳结构促进X波段的微波吸收特性

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Multifunctional microwave absorber materials exhibit promising characteristics, since they combine the diverse properties of their components. More precisely, by precipitating polypyrrole (PPy) on a mixture soundly chosen of copper and two different hexaferrites, the dielectric, plasmonic and ferrimagnetic properties can be combined in a beneficial way to tune the absorption characteristics. Beyond the multifunctionality of this absorber, several properties may emerge from intrinsic factors, such as: morphology and/or interfacial polarization linked to the core-shell structure. The absorber has been structurally characterized by XRD, FTIR and UV-vis spectroscopy. The magnetic properties and the microwave reflection loss (RL) have been investigated using a VSM and VNA, respectively. The results indicate that the presence of copper metal boosts the reflection loss of the absorber, widen the bandwidth and shifts the matching frequency towards higher values. The core-shell structure formed by coating PPy on the copper and hexaferrites mixture enhances the RL and lower both absorber thickness and loading percentage required to achieve comparable absorption performance to that of an absorber prepared by simple mixture of the components. The current optimized absorber exhibits a minimum RL of -22 dB at a matching frequency around 10.8 GHz and a thickness of 2 mm. The bandwidth under -10 dB covers all the X band starting from 9.6 GHz and continues into the Ku band.
机译:多功能微波吸收材料展现出令人鼓舞的特性,因为它们结合了其组件的多种特性。更准确地说,通过在聚铜和两种不同的六价铁氧体的混合物中析出聚吡咯(PPy),可以以有益的方式组合介电,等离激元和亚铁磁性能,以调节吸收特性。除了该吸收剂的多功能性之外,内在因素还可能产生一些特性,例如:与核-壳结构相关的形态和/或界面极化。该吸收剂在结构上已通过XRD,FTIR和UV-vis光谱进行了表征。分别使用VSM和VNA研究了磁性能和微波反射损耗(RL)。结果表明,铜金属的存在增加了吸收体的反射损耗,增加了带宽,并使匹配频率向更高的方向偏移。通过将PPy涂覆在铜和六价铁氧体混合物上而形成的核-壳结构提高了RL,并降低了吸收剂的厚度和负载率,以实现与仅通过组分简单混合制备的吸收剂相当的吸收性能。当前优化的吸收器在约10.8 GHz的匹配频率和2 mm的厚度下具有-22 dB的最小RL。 -10 dB以下的带宽覆盖了从9.6 GHz开始的所有X波段,并一直延伸到Ku波段。

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