基于多维度Co@NCNTs/FCI的柔性聚氨酯复合材料薄膜的制备及其吸波性能

Preparation of flexible polyurethane composite film based on multidimensional Co@NCNTs/FCI and their microwave absorption properties

  • 摘要: 发展高性能吸波涂层是解决电磁波辐射的有效途径之一。2D片状羰基铁(FCI)由于其高比表面积、高磁饱和度和低矫顽力等优势,被广泛应用于电磁波吸收领域。但由于其在使用时存在比重大、掺杂量高等问题,极大限制了FCI材料的应用前景。为解决该问题,本工作利用具有导电性高、长径比大、重量轻的0D/1D Co@氮摻杂碳纳米管(NCNTs)复合材料和2D FCI成功构筑了具有0D/1D/2D分层结构的Co@NCNTs/FCI纳米吸波填料,并充分利用聚氨酯(polyurethane, PU)基体柔韧性好的特性,最终制备出柔性Co@NCNTs/FCI薄膜。基于介电/磁双重协同损耗,和多尺度异质结构的构建,Co@NCNTs/FCI材料表现出杰出的吸波能力,在填充量为30 wt%,厚度为1.9 mm时,最小反射损耗(minimum reflection loss, RLmin)达−43.38 dB。此外,由于NCNTs材料的分子热振动和Co纳米颗粒的局域表面等离子共振效应,Co@NCNTs/FCI薄膜还显示优异的光热转换能力。

     

    Abstract: The development of high-performance microwave absorption materials is one of the best strategies to combat electromagnetic wave radiation. Because of its large specific surface area, high magnetic saturation, and low coercivity, 2D flake carbonyl iron (FCI) is frequently employed in microwave absorption. However, its application prospects have been severely constrained by high specific gravity and excessive doping. In order to solve this problem, multiscale heterostructure (0D/1D/2D) Co@N Doped carbon nanotubes (NCNTs)/FCI nano-absorbent fillers were successfully constructed by combination FCI with 0D/1D Co@NCNTs composites with high electrical conductivity, large aspect ratio, and light weight. Finally, the flexible Co@NCNTs/FCI film were prepared by making full of the high flexibility of the polyurethane (PU) matrix. The Co@NCNTs/FCI nanocomposites demonstrate exceptional microwave absorption performance due to the dielectric/magnetic dual synergistic loss and the construction of multiscale heterostructure. At a filling ratio of 30 wt% and a thickness of 1.9 mm, the minimum reflection loss (RLmin) reaches −43.38 dB. Furthermore, because of the molecular thermal vibration of NCNTs and the localized surface plasmon resonance effect of Co nanoparticles, the Co@NCNTs/FCI film also exhibits remarkable photothermal conversion capabilities.

     

/

返回文章
返回