首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Ultralight lamellar amorphous carbon foam nanostructured by SiC nanowires for tunable electromagnetic wave absorption
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Ultralight lamellar amorphous carbon foam nanostructured by SiC nanowires for tunable electromagnetic wave absorption

机译:通过SiC纳米线用于可调谐电磁波吸收的超轻的层状非晶碳泡沫纳米结构

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摘要

Three-dimensional hybrid foams of SiC nanowires (SiC NWs) coated and bonded with nanostructured lamellar carbon films are, herein synthesized for the first time, by combination of unidirectional freeze drying and carbonization techniques. The crystallinity of the carbon films was tunable from amorphous carbon to graphene-like carbon by heat treatment of the as-received hybrid foams to different temperatures within the range of 600-1500 degrees C. The SiC NWs-nanostructured lamellar carbon (SiC NWs/C) hybrid foams exhibited electromagnetic (EM) wave absorbing properties highly superior to current state-of-the-art counterparts, at filler loadings as low as 9.2 mg/cm(3). Effective absorption bandwidth of the SiC NWs/C foam was observed to cover the whole X-band frequency range of 8.2-12.4 GHz, with reflection loss values reaching -31 dB for an optimum thickness of 3.3 mm. The absorption efficiency of the SiC NW/C hybrid foams is discussed in the text in view of the highly absorbing layered morphology of the developed material, of interfacial polarization and multiple reflections effects and of polarization relaxation effects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过单向冷冻干燥和碳化技术的组合,通过单向冷冻干燥和碳化技术的组合首次合成,涂覆和粘合的SiC纳米线(SiC NWS)的三维杂化泡沫。通过在600-1500℃的范围内的接收的杂合泡沫的热处理在600-1500℃的不同温度范围内,将碳膜的结晶度从无定形碳转移到石墨烯样碳。 c)杂交泡沫表现出高度优于最新的和最新的对应物的电磁(EM)波吸收性能,填料载荷低至9.2mg / cm(3)。观察到SiC NWS / C泡沫的有效吸收带宽以覆盖8.2-12.4GHz的整个X波段频率范围,反射损耗值达到-31dB,最佳厚度为3.3mm。鉴于发达材料的高度吸收层状形态,界面极化和多次反射效应和极化松弛效应,在文本中讨论了SiC NW / C混合泡沫的吸收效率。 (c)2017 Elsevier Ltd.保留所有权利。

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