Wang Xueling, Zhang Xuan, Lu Jiaqi, Liu Zhiliang
College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, P.R. China.
Nanoscale. 2024 Oct 17;16(40):18952-18961. doi: 10.1039/d4nr02661f.
Magnetic/dielectric composites can achieve high-efficiency electromagnetic wave (EMW) absorption performance by integrating multiple mechanisms such as dielectric loss and magnetic loss. The bimetallic metal-organic frameworks (MOFs) assembled from ferrocene (Fc) derivative-based bridging ligands are considered ideal precursors for the preparation of magnetic/dielectric composites due to tailored alloy components with magnetic losses. Herein, a novel CoFe/C composite with nanoflower structures is successfully obtained an growth strategy to decompose an Fc-based bimetallic MOF assembled from 1,1'-ferrocene dicarboxylic acid as bridging ligands and Co ions. Notably, the nanoflower structures of the obtained composites provide an effective path for the scattering and reflection of the EMW, thereby improving the impedance matching by combining dielectric and magnetic loss. The CoFe/C composite exhibits excellent EMW absorption performance and has a minimum reflection loss of -61.6 dB at 3.7 mm and an effective absorption bandwidth of 6.24 GHz at a corresponding thickness of 2.2 mm. Moreover, the obtained composite exhibits lightweight characteristics and a low radar cross-section. This work presents a novel method through Fc-based bimetallic MOF derivatives to design and develop novel magnetic/dielectric composites with efficient EMW absorption properties for comprehensive applications.
磁性/介电复合材料可通过整合介电损耗和磁损耗等多种机制来实现高效的电磁波(EMW)吸收性能。由基于二茂铁(Fc)衍生物的桥连配体组装而成的双金属金属有机框架(MOF),因其具有可定制的具有磁损耗的合金成分,被认为是制备磁性/介电复合材料的理想前驱体。在此,通过一种生长策略成功获得了具有纳米花结构的新型CoFe/C复合材料,该策略用于分解由1,1'-二茂铁二甲酸作为桥连配体和Co离子组装而成的基于Fc的双金属MOF。值得注意的是,所获得的复合材料的纳米花结构为EMW的散射和反射提供了有效路径,从而通过结合介电损耗和磁损耗来改善阻抗匹配。CoFe/C复合材料表现出优异的EMW吸收性能,在3.7 mm处的最小反射损耗为-61.6 dB,在相应厚度为2.2 mm时的有效吸收带宽为6.24 GHz。此外,所获得的复合材料具有轻质特性和低雷达散射截面。这项工作提出了一种通过基于Fc的双金属MOF衍生物来设计和开发具有高效EMW吸收性能的新型磁性/介电复合材料以用于综合应用的新方法。