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Enhanced electromagnetic wave absorption performance of novel carbon-coated Fe3Si nanoparticles in an amorphous SiCO ceramic matrix

机译:增强了非晶SiCO陶瓷基质中新型碳涂层Fe3Si纳米粒子的电磁波吸收性能

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Tunable electromagnetic properties and excellent thermo-stability are important criteria while choosing absorbers. Here, carbon-coated Fe3Si nanoparticles in amorphous SiCO ceramics (SiCO/C/Fe3Si) were successfully obtained via polymer-derived ceramics (PDC) from ferric acetylacetonate modified-polysilylacetylene (PSA). By adjusting the magnetic components, the structure of the absorbers could be tuned and their bandwidth varied. The absorbers with a hybrid composition (4.35 wt% Fe) possessed a minimal reflection loss (RL) of -32 dB at 9.2 GHz with a thickness of 3.5 mm and an effective bandwidth (RL -10 dB) of about 3.6 GHz. The absorbers (12.33 wt% Fe) were enhanced and the minimal RL value was close to -41 dB at 7.9 GHz with a thickness of 3.5 mm. Simultaneously, a broad bandwidth (RL -5 dB) appeared and covered nearly the whole S-band (2-3.95 GHz) where the RL value reached -10 dB at 2 GHz. After the second thermal treatment under 1000 degrees C, the minimal RL value of the absorbers (12.33 wt% Fe) remained at -33 dB at 6.6 GHz with a thickness of 4 mm, while the effective bandwidth was 3.4 GHz with a thickness of 3 mm. In addition, the formation mechanism of carbon-coated Fe3Si, which possibly resulted from the mesophase SiCFe alloy was also discussed. The as-prepared SiCO/C/Fe3Si hybrid exhibits outstanding wave absorption ability and present a huge potential for the application at high temperatures.
机译:可调谐电磁特性和优异的热稳定性是选择吸收剂时的重要标准。这里,通过来自乙酰丙酮酸酯改性聚硅烷乙炔(PSA)的聚合物衍生的陶瓷(PDC)成功获得了无定形SICO陶瓷(SICO / C / FE3SI)中的碳涂覆的Fe3Si纳米颗粒。通过调节磁性部件,可以调谐吸收器的结构,并且它们的带宽变化。具有杂化组合物(4.35wt%Fe)的吸收剂具有-32dB的最小反射损失(R1),9.2GHz,厚度为3.5mm,有效带宽(R1 <-10 dB)约为3.6GHz。吸收剂(12.33wt%Fe)增强,最小的RL值在7.9GHz下接近-41dB,厚度为3.5mm。同时,宽带宽(RL& -5 dB)出现并覆盖了几乎整个S带(2-3.95GHz),其中RL值达到-10 dB为2 GHz。在1000摄氏度下的第二热处理之后,吸收剂(12.33wt%Fe)的最小RL值(12.33wt%Fe)保持在-33dB的6.6GHz,厚度为4毫米,而有效带宽为3.4GHz,厚度为3毫米。此外,还讨论了可能由中间相SiCFE合金产生的碳涂层Fe3Si的形成机制。制备的SICO / C / FE3SI杂种具有出色的波浪吸收能力,并在高温下呈现巨大潜力。

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