He Fuling, Zhao Wei, Cao Lei, Liu Zhifu, Sun Linquan, Zhang Zhiyu, Zhang Hui, Qi Tao
School of Rare Earths, University of Science and Technology of China, Hefei, 230026, P. R. China.
Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou, 341000, P. R. China.
Small. 2023 Aug;19(32):e2205644. doi: 10.1002/smll.202205644. Epub 2023 Apr 20.
Nanocomposites with hierarchical pore structure hold great potentials for applications in the field of microwave-absorbing materials because of their lightweight and high-efficiency absorption properties. Herein, M-type barium ferrite (BaM) with ordered mesoporous structure (M-BaM) is prepared via a sol-gel process enhanced by mixed anionic and cationic surfactants. The surface area of M-BaM is enhanced almost ten times compared with BaM together with 40% reflection loss enhancing. Then M-BaM compounded with nitrogen-doped reduced graphene oxide (MBG) is synthesized via hydrothermal reaction in which the reduction and nitrogen doping of graphene oxide (GO) in situ occur simultaneously. Interestingly, the mesoporous structure is able to provide opportunity for reductant to enter the bulk M-BaM reducing its Fe to Fe and further forms Fe O . It requires an optimal balance among the remained mesopores in MBG, formed Fe O , and CN in nitrogen-doped graphene (N-RGO) for optimizing impedance matching and greatly increasing multiple reflections/interfacial polarization. MBG-2 (GO:M-BaM = 1:10) achieves the minimum reflection loss of -62.6 dB with an effective bandwidth of 4.2 GHz at an ultra-thin thickness of 1.4 mm. In addition, the marriage of mesoporous structure of M-BaM and light mass of graphene reduces the density of MBG.
具有分级孔结构的纳米复合材料因其轻质和高效吸收特性而在微波吸收材料领域具有巨大的应用潜力。在此,通过混合阴离子和阳离子表面活性剂增强的溶胶 - 凝胶法制备了具有有序介孔结构的M型钡铁氧体(BaM,即M - BaM)。与BaM相比,M - BaM的表面积增加了近十倍,同时反射损耗提高了40%。然后通过水热反应合成了与氮掺杂还原氧化石墨烯(MBG)复合的M - BaM,其中氧化石墨烯(GO)的还原和氮掺杂同时原位发生。有趣的是,介孔结构能够为还原剂提供进入块状M - BaM的机会,将其Fe还原为Fe,并进一步形成FeO。在MBG中剩余的介孔、形成的FeO和氮掺杂石墨烯(N - RGO)中的CN之间需要达到最佳平衡,以优化阻抗匹配并大大增加多次反射/界面极化。MBG - 2(GO:M - BaM = 1:10)在1.4毫米的超薄厚度下实现了-62.6 dB的最小反射损耗,有效带宽为4.2 GHz。此外,M - BaM的介孔结构与石墨烯的轻质相结合降低了MBG的密度。