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One-dimensional carbon nanotube@barium titanate@polyaniline multiheterostructures for microwave absorbing application

机译:用于微波吸收的一维碳纳米管@钛酸钡@聚苯胺多异质结构

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摘要

Multiple-phase nanocomposites filled with carbon nanotubes (CNTs) have been developed for their significant potential in microwave attenuation. The introduction of other phases onto the CNTs to achieve CNT-based heterostructures has been proposed to obtain absorbing materials with enhanced microwave absorption properties and broadband frequency due to their different loss mechanisms. The existence of polyaniline (PANI) as a coating with controllable electrical conductivity can lead to well-matched impedance. In this work, a one-dimensional CNT@BaTiO3@PANI heterostructure composite was fabricated. The fabrication processes involved coating of an acid-modified CNT with BaTiO3 (CNT@BaTiO3) through a sol–gel technique followed by combustion and the formation of CNT@BaTiO3@PANI nanohybrids by in situ polymerization of an aniline monomer in the presence of CNT@BaTiO3, using ammonium persulfate as an oxidant and HCl as a dopant. The as-synthesized CNT@BaTiO3@PANI composites with heterostructures were confirmed by various morphological and structural characterization techniques, as well as conductivity and microwave absorption properties. The measured electromagnetic parameters showed that the CNT@BaTiO3@PANI composites exhibited excellent microwave absorption properties. The minimum reflection loss of the CNT@BaTiO3@PANI composites with 20 wt % loadings in paraffin wax reached −28.9 dB (approximately 99.87% absorption) at 10.7 GHz with a thickness of 3 mm, and a frequency bandwidth less than −20 dB was achieved from 10 to 15 GHz. This work demonstrated that the CNT@BaTiO3@PANI heterostructure composite can be potentially useful in electromagnetic stealth materials, sensors, and electronic devices.
机译:已经开发出填充有碳纳米管(CNT)的多相纳米复合材料,因为它们在微波衰减方面具有巨大的潜力。已经提出将其他相引入到CNT上以实现基于CNT的异质结构,以获得由于它们不同的损耗机理而具有增强的微波吸收特性和宽带频率的吸收材料。聚苯胺(PANI)作为具有可控电导率的涂层的存在会导致阻抗匹配良好。在这项工作中,制造了一维CNT @ BaTiO3 @ PANI异质结构复合材料。制备过程涉及通过溶胶-凝胶技术用BaTiO3(CNT @ BaTiO3)涂覆酸改性的CNT,然后燃烧,并在CNT存在下通过苯胺单体的原位聚合形成CNT @ BaTiO3 @ PANI纳米杂化物。 @ BaTiO3,使用过硫酸铵作为氧化剂和HCl作为掺杂剂。通过各种形态和结构表征技术以及电导率和微波吸收特性,证实了具有异质结构的合成后的CNT @ BaTiO3 @ PANI复合材料。测量的电磁参数表明,CNT @ BaTiO3 @ PANI复合材料表现出优异的微波吸收性能。石蜡中负载20 wt%的CNT @ BaTiO3 @ PANI复合材料的最小反射损耗在10.7 GHz,厚度为3 mm的情况下达到-28.9 dB(吸收率为99.87%左右),并且频率带宽小于-20 dB达到10至15 GHz。这项工作表明,CNT @ BaTiO3 @ PANI异质结构复合材料在电磁隐身材料,传感器和电子设备中可能很有用。

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