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分层碳纳米管涂覆碳纤维:超轻、超薄、高效微波吸收体。

Hierarchical Carbon Nanotube-Coated Carbon Fiber: Ultra Lightweight, Thin, and Highly Efficient Microwave Absorber.

出版信息

ACS Appl Mater Interfaces. 2018 Jul 25;10(29):24816-24828. doi: 10.1021/acsami.8b06673. Epub 2018 Jul 16.

Abstract

Strong EM wave absorption and lightweight are the foremost important factors that drive the real-world applications of the modern microwave absorbers. This work mainly deals with the design of highly efficient microwave absorbers, where a hierarchical carbon nanotube (CNT) forest is first grown on the carbon fiber (CF) through the catalytic chemical vapor deposition method. The hierarchical carbon nanotube grown on the carbon fiber (CNTCF) is then embedded in the epoxy matrix to synthesize lightweight nanocomposites for their use as efficient microwave absorbers. The morphological study shows that carbon nanotubes (CNTs) self-assemble to form a trapping center on the carbon fiber. The electromagnetic characteristics of resultant nanocomposites are investigated exclusively in the X-band (8.2-12.4 GHz) using the network analyzer. The synthesized nanocomposites, containing 0.35 and 0.50 wt % CNTCFs, exhibit excellent microwave absorption properties, which could be attributed to the better impedance matching conditions and high dielectric losses. The reflection loss (RL) of -42.0 dB (99.99% absorption) with -10 dB (90% absorption) and -20 dB (99% absorption) bandwidths of 2.7 and 1.16 GHz, respectively, is achieved for 0.35 wt % CNTCF loading at 2.5 mm thickness. The composite with 0.50 wt % CNTCF loading illustrates substantial absorption efficiency with the RL reaching -24.5 dB (99.65% absorption) at 9.8 GHz and -10 dB bandwidth comprising 84.5% of the entire X band. The excellent microwave properties obtained here are primarily due to the electric dipole polarization, interfacial polarization, and unique trapping center. These trapping centers basically induce multiple reflections and scatterings, which attenuate more microwave energy. This investigation opens a new approach for the development of extremely lightweight, small-thickness, and highly efficient microwave absorbers for X-band applications.

摘要

强电磁场吸收和轻量化是推动现代微波吸收体实际应用的最重要因素。本工作主要涉及高效微波吸收体的设计,首先通过催化化学气相沉积法在碳纤维(CF)上生长分层碳纳米管(CNT)森林。然后将生长在碳纤维上的分层碳纳米管(CNTCF)嵌入环氧树脂基体中,合成轻质纳米复合材料,用作高效微波吸收体。形态研究表明,碳纳米管(CNTs)自组装在碳纤维上形成捕获中心。使用网络分析仪在 X 波段(8.2-12.4GHz)专门研究所得纳米复合材料的电磁特性。含 0.35 和 0.50wt%CNTCF 的合成纳米复合材料表现出优异的微波吸收性能,这可归因于更好的阻抗匹配条件和高介电损耗。在 2.5mm 厚度下,0.35wt%CNTCF 负载时,反射损耗(RL)达到-42.0dB(99.99%吸收),-10dB(90%吸收)和-20dB(99%吸收)带宽分别为 2.7GHz 和 1.16GHz。0.50wt%CNTCF 负载复合材料具有较高的吸收效率,RL 在 9.8GHz 时达到-24.5dB(99.65%吸收),-10dB 带宽占整个 X 波段的 84.5%。这里获得的优异微波性能主要归因于电偶极子极化、界面极化和独特的捕获中心。这些捕获中心基本上会引起多次反射和散射,从而衰减更多的微波能量。这项研究为开发用于 X 波段应用的极轻量、薄厚度和高效微波吸收体开辟了新途径。

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