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Modulating Magnetic Interface Layer on Porous Carbon Heterostructures for Efficient Microwave Absorption

Nano Research(2024)

Hubei University of Automotive Technology | Qingdao University

Cited 46|Views4
Abstract
Modern communication systems call for high performance electromagnetic wave absorption materials capable of mitigating microwaves over a wide frequency band. The synergistic effect of structure and component regulation on the electromagnetic wave absorption capacity of materials is considered. In this paper, a new type of three-dimensional porous carbon matrix composite is reported utilizing a reasonable design of surface impedance matching. Specifically, a thin layer of densely arranged Fe-Cr oxide particles is deposited on the surface of porous carbon via thermal reduction to prepare the Fe-Cr-O@PC composites. The effect of Cr doping on the electromagnetic wave absorption performance of the composites and the underlying attenuation mechanism have been uncovered. Consequently, outstanding electromagnetic wave absorption performance has been achieved in the composite, primarily contributed by the enhanced dielectric loss upon Cr doping. Accordingly, an effective absorption bandwidth of 4.08 GHz is achieved at a thickness of 1.4 mm, with a minimum reflection loss value of -52.71 dB. This work not only provides inspiration for the development of novel absorbers with superior performance but also holds significant potential for further advancement and practical application.
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microwave absorber,porous carbon,magnetic compounds,interface layer
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要点】:本文报道了一种新型的三维多孔碳基复合材料,通过调节磁界面层实现高效的微波吸收性能,创新点在于利用Cr掺杂增强介电损耗,从而拓宽吸收带宽并降低反射损失。

方法】:通过在多孔碳表面热还原沉积一层密集排列的Fe-Cr氧化物颗粒,制备Fe-Cr-O@PC复合材料,研究Cr掺杂对微波吸收性能的影响及衰减机制。

实验】:在1.4 mm厚度下,Fe-Cr-O@PC复合材料实现了4.08 GHz的有效吸收带宽,反射损失最低可达-52.71 dB。