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Synthesis and electromagnetic wave absorption property of amorphous carbon nanotube networks on a 3D graphene aerogel/BaFe12O19 nanocomposite

机译:三维石墨烯纤维/ BAFE12O19纳米复合材料上无定形碳纳米管网络的合成与电磁波吸收性能

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摘要

Homogeneous amorphous carbon nanotube (ACNT) networks have been synthesized using floating catalyst chemical vapor deposition method on a 3D graphene aerogel (GA)/ BaFe12O19 (BF) nanocomposite which was prepared by a self-propagating combustion process. The as-synthesized ACNT/GA/BF nanocomposite with 3D network structures could be directly used as a good absorber material for electromagnetic wave absorption. The experimental results indicated that the minimum reflection loss of ACNT/GA/BF composite with a thickness of 2 mm was -18.35 dB at 10.64 GHz in the frequency range of 2-18 GHz. The frequency bandwidth of the reflection loss below -10 dB was 3.32 GHz and below -5 dB was 6.24 GHz, respectively. The 3D graphene aerogel structures which composed of dense interlined tubes and amorphous structure bearing quantities of dihedral angles could consume the incident waves through multiple reflection and scattering inside the 3D web structures. The interlinked ACNTs have both the virtues of amorphous CNTs (multiple reflection inside the wall) and crystalline CNTs (high conductivity), consuming the electromagnetic wave as resistance heat. ACNT/GA/BF composite has a good electromagnetic wave absorption performance.
机译:在3D石墨烯气凝胶(GA)/ Bafe12O19(BF)纳米复合材料上使用浮动催化剂化学气相沉积方法合成了均相非晶碳纳米管(ACNT)网络,该纳米纳米复合材料是通过自蔓延燃烧方法制备的。具有3D网络结构的AS合成的ACNT / GA / BF纳米复合材料可以直接用作电磁波吸收的良好吸收材料。实验结果表明,在2-18GHz的频率范围内,厚度为2mm的ACNT / GA / BF复合材料的最小反射损耗为-18.35dB为10.64GHz。 -10 dB以下的反射损耗的频率带宽分别为3.32GHz,低于-5 dB为6.24GHz。由致密的横向管和无定形结构组成的二向角度的3D石墨烯气体结构可以通过三维幅材结构内的多次反射和散射消耗入射波。相互连接的acnts具有无定形CNT(壁内的多重反射)和结晶CNT(高导电性)的优点,消耗电磁波作为电阻热量。 ACNT / GA / BF复合材料具有良好的电磁波吸收性能。

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