首页> 美国卫生研究院文献>Nanomaterials >Two-Step Solvothermal Synthesis of (Zn0.5Co0.5Fe2O4/Mn0.5Ni0.5Fe2O4)@C-MWCNTs Hybrid with Enhanced Low Frequency Microwave Absorbing Performance
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Two-Step Solvothermal Synthesis of (Zn0.5Co0.5Fe2O4/Mn0.5Ni0.5Fe2O4)@C-MWCNTs Hybrid with Enhanced Low Frequency Microwave Absorbing Performance

机译:具有增强的低频微波吸收性能的两步溶剂热合成(Zn0.5Co0.5Fe2O4 / Mn0.5Ni0.5Fe2O4)@ C-MWCNTs杂化物

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摘要

In this study, the quaternary hybrid of (Zn Co Fe O /Mn Ni Fe O )@C-MWCNTs with high-performance in low frequency electromagnetic absorption was synthesized via a facile two-step solvothermal synthesis method. The physicochemical properties as well as electromagnetic parameters and microwave absorption performance were characterized by XRD, SEM, TEM, RS, TGA, and VNA, respectively. The results indicate a nuclear-shell morphology of this hybrid for amorphous carbon coated on the surface of Zn Co Fe O and Mn Ni Fe O mixed polycrystalline ferrites. In addition, the MWCNTs synchronously enwind in the nuclear-shell NPs to form a special cross-linking structure. The outstanding low frequency microwave absorption property is attributed to the synergistic effect of dielectric and magnetic loss, better impedance matching condition, and excellent attenuation characteristics of the as-prepared paramagnetic quaternary hybrid. Maximum of −35.14 dB at 0.56 GHz with an effective absorption bandwidth in the range of 0.27–1.01 GHz can be obtained with thickness of 5 mm. This hybrid exhibits superior low frequency microwave absorption properties compared with other ferrite-carbon nanocomposites. This investigation provides a new route to prepare suitable candidates for the absorption of electromagnetic waves in a low frequency band on account of its good performance and simple preparation process.
机译:本研究通过一种简便的两步溶剂热合成方法,合成了在低频电磁吸收中具有高性能的(Zn Co Fe O / Mn Ni Fe O)@ C-MWCNTs的四元杂化体。分别用XRD,SEM,TEM,RS,TGA和VNA表征其理化性质,电磁参数和微波吸收性能。结果表明,该杂化体的核-壳形态是在Zn Co Fe O和Mn Ni Fe O混合多晶铁氧体表面涂覆的非晶碳的。此外,MWCNTs同步缠绕在核壳NP中,形成特殊的交联结构。出色的低频微波吸收特性归因于介电和磁损耗的协同效应,更好的阻抗匹配条件以及所制备的顺磁四元杂化体的出色衰减特性。在厚度为5 mm的情况下,可以在0.56 GHz处获得最大-35.14 dB的有效吸收带宽,范围为0.27–1.01 GHz。与其他铁氧体-碳纳米复合材料相比,该杂化物表现出优异的低频微波吸收特性。由于其良好的性能和简单的制备过程,这项研究提供了一条新的途径来为在低频频段吸收电磁波准备合适的候选物质。

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