首页> 外文期刊>Composites Science and Technology >Three-phase PANI@nano-Fe3O4@CFs heterostructure: Fabrication, characterization and investigation of microwave absorption and EMI shielding of PANI@nano-Fe3O4@CFs/epoxy hybrid composite
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Three-phase PANI@nano-Fe3O4@CFs heterostructure: Fabrication, characterization and investigation of microwave absorption and EMI shielding of PANI@nano-Fe3O4@CFs/epoxy hybrid composite

机译:三相PANI @ nano-Fe3O4 @ CFs异质结构:PANI @ nano-Fe3O4 @ CFs /环氧混杂复合材料的微波吸收和EMI屏蔽的制备,表征和研究

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In this work, a three phase carbon fiber (CF)-based electromagnetic (EM) wave absorbing and EM interference (EMI) shielding heterostructure was fabricated through a layer by layer assembly. The nano-Fe3O4 particles were deposited on CFs via a modified multi-step electrophoretic deposition (EPD). The PANI@nano-Fe3O4@CFs heterostructures were prepared using an in situ polymerization process of polyaniline (PANI) on nano-Fe3O4@CFs in HCI solution. The results showed that the PANI@nano-Fe3O4@CFs mats with a layer by layer (LBL) assembly were successfully fabricated. The saturated magnetization (Ms) of the as-synthesized nano-Fe3O4 powder decreased from 72.612 to 8.934 emu/g for the nano-Fe3O4@CFs and from 8.934 to 0.191 emu/g for the PANI@nano-Fe3O4@CFs mats due to the reduction in the effective mass/volume percentage of nano-Fe3O4 particles in the composites. The fabricated epoxy -based hybrid composites filled with PANI@nano-Fe3O4@CFs segments exhibited both of the dielectric and magnetic losses at the 8.2-18 GHz frequency range. The composite containing 1 we% of PANI@nano-Fe3O4@CFs with the thickness of 1.5 mm showed a maximum reflection loss (RL) value of 11.11 dB with an effective absorption bandwidth of about 6 GHz in the frequency range of 8.2-18 GHz. Also, the sample filled with 5 wt % of EM wave absorbing segments with the thickness of 3 mm demonstrated an EMI shielding effectiveness (SE) value of 29 dB at the same frequency range. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过逐层组装,制造了基于三相碳纤维(CF)的电磁波(EM)吸收和EM干扰(EMI)屏蔽异质结构。纳米Fe3O4颗粒通过改进的多步电泳沉积(EPD)沉积在CF上。使用聚苯胺(PANI)在HCl溶液中的纳米Fe3O4 @ CFs上原位聚合工艺制备了PANI @ nano-Fe3O4 @ CFs异质结构。结果表明,成功制备了具有层层组装的PANI @ nano-Fe3O4 @ CFs垫。合成后的纳米Fe3O4粉末的饱和磁化强度从72.612降至8.934 emu / g(纳米Fe3O4 @ CFs),从PANI @ nano-Fe3O4 @ CFs垫从8.934降至0.191 emu / g。降低了复合材料中纳米Fe3O4颗粒的有效质量/体积百分比。填充有PANI @ nano-Fe3O4 @ CFs链段的环氧树脂基杂化复合材料在8.2-18 GHz频率范围内均表现出介电损耗和磁损耗。包含1 we%的PANI @ nano-Fe3O4 @ CFs的复合材料厚度为1.5 mm,在8.2-18 GHz的频率范围内,最大反射损耗(RL)值为11.11 dB,有效吸收带宽约为6 GHz 。另外,填充有5 wt%厚度为3 mm的EM波吸收段的样品在相同频率范围内显示29 dB的EMI屏蔽效果(SE)值。 (C)2017 Elsevier Ltd.保留所有权利。

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