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Polymer self-assembly guided heterogeneous structure engineering towards high-performance low-frequency electromagnetic wave absorption

机译:聚合物自组装引导非均相结构工程迈向高性能低频电磁波吸收

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Magnetic-dielectric synergy is currently regarded as among the most effective approaches to achieve lowfrequency electromagnetic wave absorption (EMA). However, designing and fabricating EMA materials with tunable magnetic-dielectric balance towards high-performance low-frequency EMA remains challenging. Herein, a polymer self-assembly guided heterogeneous structure engineering strategy is proposed to fabricate hierarchical magnetic-dielectric nanocomposite. Polymer assemblies not only can be employed as intermediates to encapsulate metal-organic frameworks and load metal hydroxide, but also that they play a crucial role for the insitu formation of polycrystalline FeCo/Co composite nanoparticles. As a result, the minimum reflection loss (RLmin) can reach -59.61 dB at 5.4 GHz (4.8 mm) with a 20 wt filler loading, while the effective absorption bandwidth (EAB, RLmin LE; -10 dB) is 2.16 GHz, exhibiting excellent low-frequency EMA performance. Systematic investigations demonstrate that hierarchical mesoporous carbon matrix that supports FeCo/Co composite nanoparticles is beneficial for optimizing impedance matching and increasing attenuation capacity. In general, this study opens up new prospects for developing magnetic-dielectric EMA materials using a polymer selfassembly guided heterogeneous structure engineering strategy, which may receive significant attention in future research.
机译:磁介质协同目前被认为是实现低频电磁波吸收(EMA)的最有效方法之一。然而,设计和制造具有可调谐磁介质平衡的EMA材料,以实现高性能低频EMA仍然具有挑战性。本文提出了一种聚合物自组装引导的非均相结构工程策略,用于制备多级磁介质纳米复合材料。聚合物组件不仅可以用作封装金属有机框架和加载金属氢氧化物的中间体,而且它们在多晶FeCo/Co复合纳米颗粒的原位形成中起着至关重要的作用。因此,在5.4 GHz(4.8 mm)的填充物负载下,最小反射损耗(RLmin)可以达到-59.61 dB,而有效吸收带宽(EAB,RLmin和LE;-10 dB)为2.16 GHz,表现出出色的低频EMA性能。系统研究表明,支持FeCo/Co复合纳米颗粒的多级介孔碳基体有利于优化阻抗匹配和提高衰减能力。总之,本研究为利用聚合物自组装引导的异质结构工程策略开发磁介电EMA材料开辟了新的前景,在未来的研究中可能会受到重视。

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