NiFe粒子修饰的甘蔗渣衍生碳复合材料的制备及其吸波性能研究

Preparation and microwave absorption properties of nife particle-decorated sugarcane-derived carbon composites

  • 摘要: 生物质碳因其具有天然复杂结构及绿色环保的优势,在微波吸收领域受到广泛关注。本研究采用一种简单、绿色的碳化方法,以浸渍金属前驱体的甘蔗纤维为原料,制备了镍铁/甘蔗衍生碳(nickel-iron/sugarcane-derived carbon, NiFe/SDC)复合材料,并对其吸波性能进行了系统研究。得益于生物质碳的介电损耗与NiFe粒子磁损耗的协同效应,以及复合后优化的阻抗匹配性能和增强的衰减能力,NiFe/SDC复合材料表现出优异的吸波性能。研究中性能最佳的样品在厚度为1.4 mm时,其最小反射损耗为−48.86 dB;在匹配厚度为1.7 mm时,其最大有效吸收频带宽达到5.46 GHz。这种优异的吸波材料具有轻质、强吸波、宽频带和工艺简单等优点,为利用丰富的天然植物废料大规模生产电磁波吸收剂提供了一条便捷的途径。

     

    Abstract: Biomass-derived carbon has garnered significant attention in the field of microwave absorption due to its intricate natural structure and environmentally friendly attributes. In this study, a straightforward and sustainable carbonization method was utilized to synthesize composites, employing metal-precursor-impregnated sugarcane fibers as the starting material. The microwave absorption characteristics of these composites were subsequently examined. Owing to the synergistic interaction between the dielectric loss properties of the biomass carbon and the magnetic loss contributions of the NiFe components, along with optimized impedance matching and enhanced attenuation capacity upon compounding, the NiFe/SDC composites demonstrate superior microwave absorption performance. The most effective sample in this investigation achieves a minimum reflection loss of −48.86 dB at a thickness of 1.4 mm, with a maximum effective absorption bandwidth of 5.46 GHz at a matching thickness of 1.7 mm. This high-performance absorber fulfills the criteria of being lightweight, highly absorptive, broadband, and easy to process, offering a practical pathway for the large-scale fabrication of electromagnetic wave absorbers from abundant natural plant waste.

     

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