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Lightweight electromagnetic wave absorbent composites with Fe3O4 nanocrystals uniformly decorated on the surface of carbon spheres

机译:轻量级的电磁波吸收剂复合材料与Fe3O4纳米晶体均匀装饰表面的碳球

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The application of electromagnetic waves has reached every aspect of human life, but the search for superior electromagnetic wave absorbent materials has been a constant quest of researchers. The application of heterogeneous structures has been favored by researchers of electromagnetic wave absorbent materials and the quest for simple preparation methods and homogeneous distribution of heterogeneous structures is continuing. In this study, we synthesized carbon sphere/Fe3O4 nanocrystal (CS/Fe3O4) composites by uniformly decorating Fe3O4 nanoparticles on the surface of carbon spheres through a simple strategy of expanding the heterogeneous structured interface. The heterogeneous interface formed by graphite and amorphous carbon in the carbon spheres is a boundary-type defect and combined with the magnetic loss capability of the Fe3O4 nanocrystals, this composite material has excellent electromagnetic wave absorption properties. The composite material synthesized with 0.05 M solution of iron nitrate has the best electromagnetic wave absorption performance of all samples due to the synergistic effect of interfacial polarization, eddy current loss, defect engineering, and magnetic energy attenuation capability. Reflection losses of -50.932 dB and -49.143 dB were achieved at 4.65 GHz and 10.6 GHz respectively, corresponding to thicknesses of 3.74 mm and 1.74 mm. In addition, the widest effective absorption bandwidth (EAB) at 1.27 mm was 4.5 GHz (13.50-18 GHz). This study enhances the electromagnetic wave absorption performance of carbon spheres by surface-decorating Fe3O4 nanoparticles, solves the problem of homogeneity of decorative magnetic oxides on the surface of carbon-based materials, and provides new ideas for the design of controllable, lightweight, ultra-thin composites of carbon-based electromagnetic wave absorbent materials that possess strong electromagnetic wave absorption capability.
机译:电磁波的应用达到了人类生活的方方面面,但寻找卓越的电磁波吸收性材料的不断追求研究人员。结构受到研究人员的青睐电磁波吸收材料的追求简单的制备方法均匀分布的异构结构仍在继续。合成碳球/ Fe3O4纳米晶体通过统一装修(CS / Fe3O4)复合材料Fe3O4纳米粒子表面的碳球通过一个简单的战略扩张异质结构界面。由石墨和异质界面无定形碳的碳球边界型缺陷和结合磁损耗Fe3O4的能力纳米晶体,这种复合材料良好的电磁波吸收属性。与0.05硝酸铁溶液有最好的电磁波吸收性能所有样品的协同效应界面极化,涡流损耗,缺陷工程和磁场能量衰减能力。-50.932 dB和-49.143 dB达到4.65兆赫和10.6 GHz分别对应厚度3.74毫米和1.74毫米。最宽的有效吸收带宽(EAB)在1.27毫米4.5 GHz (13.50 -18 GHz)。增强了电磁波的吸收碳球的性能表面装饰Fe3O4纳米颗粒,解决装饰磁场的均匀性问题氧化物表面的碳基材料,并为设计提供了新思路可控的、轻量级的超薄复合材料碳基的电磁波吸收剂材料,具有强烈的电磁波波的吸收能力。

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