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首页> 外文期刊>RSC Advances >Direct in situ synthesis of a 3D interlinked amorphous carbon nanotube/graphene/BaFe12O19 composite and its electromagnetic wave absorbing properties
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Direct in situ synthesis of a 3D interlinked amorphous carbon nanotube/graphene/BaFe12O19 composite and its electromagnetic wave absorbing properties

机译:3D互连无定形碳纳米管/石墨烯/ BaFe 12 O 19 复合材料的直接原位合成及其电磁波吸收特性

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The 3D interlinked amorphous carbon nanotube (ACNT)/reduced graphene oxide (RGO)/BaFe12O19 (BF) composite was directly prepared by a self-propagation combustion process. The RGO was synthesized in situ through the massive heat release during the auto-combustion reaction. The interlinked ACNTs and graphene as well as BF formed the conductive networks for improving the dielectric and magnetic loss. The reflection loss peak of ACNT/RGO/BF composite was ?19.03 dB at 11.04 GHz in the frequency range of 2–18 GHz. The frequency bandwidth of the reflection loss below ?10 dB was 3.8 GHz. The 3D interlinked ACNT-RGO structure, which was composed of dense intertwined ACNT and graphene with quantities of dihedral angles, could consume incident waves via multiple reflections inside the 3D structures. The high conductivity of 3D interlinked ACNT/RGO networks would lead to energy dissipation in the form of heat through molecular friction and dielectric loss.
机译:3D交联无定形碳纳米管(ACNT)/氧化石墨烯(RGO)/ BaFe 12 O 19 ( BF)复合材料是通过自蔓延燃烧过程直接制备的。 RGO是通过自燃反应过程中大量放热原位合成的。互连的ACNT和石墨烯以及BF形成了导电网络,以改善介电和磁损耗。在2-18 GHz的频率范围内,ACNT / RGO / BF复合材料在11.04 GHz处的反射损耗峰值为〜19.03 dB。低于10 dB的反射损耗的带宽为3.8 GHz。由紧密缠结的ACNT和石墨烯组成的3D互连ACNT-RGO结构具有一定的二面角,可以通过3D结构内部的多次反射消耗入射波。 3D互连的ACNT / RGO网络的高电导率将通过分子摩擦和介电损耗以热的形式导致能量耗散。

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