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High-Performance Electromagnetic Wave Absorbing CNT/SiCf Composites: Synthesis, Tuning, and Mechanism

机译:高性能电磁波吸收CNT / SICF复合材料:合成,调整和机构

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摘要

High-performance electromagnetic (EM) wave absorbing materials are strongly desired in many fields like portable devices and aircraft. Introducing carbon nanotubes (CNTs) to certain materials has been proved to be an effective method leading to good EM wave absorption capability. In this work, CNTs are successfully synthesized on SiC fibers with high speed by using a newly developed method which is far more efficient than the commonly used one. The obtained CNT/SiCf composites exhibit high-performance EM wave absorption capability. With 0.72 wt % CNTs, the reflection loss of the 4 mm composite with only 20 wt % filler loading reaches -62.5 dB with the broad effective absorption bandwidth of 8.8 GHz, covering almost the entire Ku band and three-quarters X band. Moreover, the composites can be added to varying matrices so as to modify their EM wave absorption and other properties. The EM wave absorption performance can be easily tuned in a wide range by varying the CNT content, thickness, and filler loading. This work offers a new route for efficiently synthesizing CNTs but, more importantly, for designing high- performance and multifunctional EM wave absorbing materials.
机译:在便携式设备和飞机等许多领域中强烈需要高性能电磁(EM)波吸收材料。已经证明将碳纳米管(CNT)引入某些材料是一种有效的方法,导致良好的EM波吸收能力。在这项工作中,通过使用新开发的方法,在SiC纤维上成功地合成CNT,该方法远远超过常用的方法。所获得的CNT / SICF复合材料表现出高性能的EM波吸收能力。对于0.72wt%CNT,具有仅为20wt%填充物的4mm复合材料的反射损耗达到-62.5dB,具有8.8GHz的广泛有效吸收带宽,几乎覆盖整个KU频段和四分之三X频段。此外,可以将复合材料添加到变化的矩阵,以便改变其EM波吸收和其他性质。通过改变CNT含量,厚度和填充载荷,可以在宽范围内轻松调谐EM波吸收性能。这项工作提供了一种用于有效地合成CNT的新路线,更重要的是,更重要的是,用于设计高性能和多功能EM波吸收材料。

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