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首页> 外文期刊>Nanoscale >Synthesis of sandwich-like Co15Fe85@C/RGO multicomponent composites with tunable electromagnetic parameters and microwave absorption performance
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Synthesis of sandwich-like Co15Fe85@C/RGO multicomponent composites with tunable electromagnetic parameters and microwave absorption performance

机译:合成一张Co15Fe85@C / RGO多组分复合材料与可调电磁参数和微波吸收性能

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摘要

Magnetic particle/carbon hybrid structures are promising candidates for high performance microwave absorbing materials with light weight and strong absorption. However, it remains a great challenge to balance the permittivity and permeability to realize impedance matching and further improve their absorption bandwidth. Herein, an effective strategy is designed to fabricate sandwich-like Co15Fe85@C/RGO composites. By introducing RGO sheets in the hybrid structures, the electromagnetic parameters, impedance matching and microwave absorption properties of the final materials can be well controlled. The optimized Co15Fe85@C/RGO composite shows an excellent microwave absorption performance, the strongest reflection loss (RL) of the sample is up to -33.38 dB at 10.72 GHz with a matching thickness of 2.5 mm, and the effective bandwidth (RL < -10 dB) can reach 9.2 GHz (8.64-17.84 GHz). With a single thickness, such a wide absorption band is rarely reported. Their excellent performance can be ascribed to the synergetic effect of the chemical composition and unique sandwich-like structures, which will improve impendence matching and strong microwave attenuation constants of the composites. Our results provide a facile strategy for tuning the electromagnetic parameters and microwave absorption properties of magnetic metal/carbon hybrid structures.
机译:磁粉/碳混合结构有前途的候选人为高性能微波吸收材料重量轻和强烈的吸收。平衡介电常数和巨大的挑战渗透率实现阻抗匹配进一步改善其吸收带宽。在此,设计一个有效的策略复合材料。混合结构、电磁参数、阻抗匹配和微波炉最后的材料可以吸收属性很好地控制。综合显示了优异的微波吸收性能,最强的反射损失(RL)的样品在10.72 GHz -33.38 dB一个匹配的厚度为2.5毫米,有效带宽(RL < -10分贝)可以达到9.2GHz (8.64 -17.84 GHz)。这种宽吸收带是很少报道。他们可以归结于优秀的性能化学成分的协同作用和一张很独特的结构,改善迫切匹配和强大的微波复合材料的衰减常数。结果提供了一个简单的策略调整电磁参数和微波磁性金属/碳的吸收特性混合结构。

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