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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fe@NPC@CF nanocomposites derived from Fe-MOFs/biomass cotton for lightweight and high-performance electromagnetic wave absorption applications
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Fe@NPC@CF nanocomposites derived from Fe-MOFs/biomass cotton for lightweight and high-performance electromagnetic wave absorption applications

机译:Fe @ NPC @ CF纳米复合材料来自Fe-Mofs / Biomass棉,用于轻质和高性能电磁波吸收应用

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摘要

Electromagnetic (EM) wave absorbing materials have been extensively applied in the electronic devices and wireless communication to solve the increasingly serious problems of electromagnetic pollution and radiation. In this work, Fe-MOFs/biomass cotton derived Fe@nanoporous carbon@carbon fiber (Fe@NPC@CF) composites were successfully obtained by means of in-situ synthesis and thermal decomposition processes. It was found that the Fe@NPC composites were uniformly distributed on the carbon fibers matrix. As a result, EM wave absorbing performances were greatly promoted via the synergic effects among Fe nanoparticles, nanoporous carbon and carbon fibers. A strong reflection loss (RL) of -46.2 dB and a wide absorbing bandwidth of 5.2 GHz (RL < -10 dB) with a matching thickness of 2.5 mm were achieved for the Fe@NPC@CF composites with a low filling ratio of 25%. Therefore, this work not only paved the way for development of biomass as a green, low-cost and renewable high-performance carbon-based absorber, but also provided a good design and fabricating concept for the composite materials of EM wave absorber. (C) 2019 Elsevier B.V. All rights reserved.
机译:电磁(EM)波吸收材料已广泛应用于电子设备和无线通信,以解决电磁污染和辐射的越来越严重的问题。在这项工作中,通过原位合成和热分解过程成功获得Fe-Mofs / BioMass棉衍生的Fe @纳米孔碳@碳纤维(Fe @ NPC @ CF)复合材料。发现Fe @ NPC复合材料均匀地分布在碳纤维基质上。结果,通过Fe纳米颗粒,纳米孔碳和碳纤维之间的协同作用大大促进了EM波吸收性能。对于FE @ NPC @ CF复合材料,实现了匹配厚度为2.5mm的-46.2dB的强烈反射损耗(R1)和5.2GHz(RL <-10 dB)的宽吸收带宽,具有25的低填充率的CF复合材料%。因此,这项工作不仅为生物量开发为绿色,低成本和可再生高性能碳吸收剂,而且还为EM波吸收剂的复合材料提供了良好的设计和制造理念。 (c)2019 Elsevier B.v.保留所有权利。

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