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Electromagnetic and microwave absorption properties of iron pentacarbonyl pyrolysis-synthesized carbonyl iron fibers

机译:铁芳羰基热解合成羰基纤维的电磁和微波吸收性能

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The present study executed iron pentacarbonyl pyrolysis to synthesize one-dimensional structured carbonyl iron fibers (CIFs) via carrier gas induced flow. The obtained CIFs with a diameter of 100–300 nm and length–diameter ratio of more than 20, are actually composed of a large number of nanocrystalline aggregates. We investigated the dependence of the structure, morphology, and static magnetic and electromagnetic properties of the CIFs on the pyrolysis temperatures. CIFs synthesized at 300 °C (denoted as CIF-300) exhibited optimal microwave absorption properties dependent on the fiber structure and well-matched impedance. An optimal reflection loss of ?58.1 dB was observed at 13.8 GHz with a matching thickness of 1.43 mm. Furthermore, CIF-300 presented a broad effective absorption bandwidth (RL ≤ ?10 dB) of 5.66 GHz with a thickness of 1.44 mm, indicating that it could be applied in practical applications from 3.74 GHz to 18.0 GHz by tuning its thickness from 1.0 mm to 4.0 mm. This paper not only reveals that the CIFs synthesized at 300 °C have great potential application in microwave absorbing materials (MAMs) with thin thicknesses, wide absorption bandwidths, and strong absorption intensities, but also provides a simple approach to prepare metal fibers.
机译:本研究执行了铁芳羰基热解,以通过载气诱导的流动合成一维结构羰基铁纤维(CIFs)。具有直径为100-300nm和长直径比大于20的CIF,实际上由大量的纳米晶体聚集体组成。我们调查了CIFS在热解温度上的结构,形态和静态磁性和电磁特性的依赖性。在300℃(表示为CIF-300)中合成的CIFS表现出依赖于纤维结构和良好匹配的阻抗的最佳微波吸收性能。在13.8GHz的厚度为1.43mm的13.8GHz中观察到58.1dB的最佳反射损失。此外,CIF-300呈现出5.66GHz的宽有效吸收带宽(RL≤≤10dB),厚度为1.44毫米,表明它可以通过从1.0 mm调节其厚度从3.74GHz到18.0GHz的实际应用中应用到4.0毫米。本文不仅揭示了在300°C时合成的CIFs在微波吸收材料(MAM)中具有很大的潜在应用,具有薄的厚度,宽吸收带宽和强烈的吸收强度,还提供了一种制备金属纤维的简单方法。

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