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Facile synthesis of rGO/SmFe_5Oi_2/CoFe_2O_4 ternary nanocomposites: Composition control for superior broadband microwave absorption performance

机译:轻松合成rGO / SmFe_5Oi_2 / CoFe_2O_4三元纳米复合材料:组成控制可实现出色的宽带微波吸收性能

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摘要

It is still a challenge to design and synthesize ferrite-based composites with strong absorption capability and broad frequency bandwidth. In this work, firstly, the binary SmFe5O12/CoFe2O4 composites with different mass ratio of SmFe5O12 to CoFe2O4 are synthesized by a facile hydrothermal process. Next, adding 10 mg graphite oxide (GO) into SmFe5O12/CoFe2O4 solution, series of novel reduced graphene oxide (rGO)/SmFe5O12/CoFe2O4 ternary nanocomposites are fabricated using a one-pot hydrothermal technique. The microstructure, morphology, chemical composition and magnetic property of as-synthesized nanocomposites are characterized by XRD, Raman, TEM, SEM, XPS and VSM. The magnetic performance of SmFe5O12 changes with the addition of CoFe2O4 and rGO. The microwave absorption measurement is carried out by vector network analyzer, where the as-synthesized samples exhibit excellent and tunable microwave adsorption performance. Herein, introducing CoFe2O4 and rGO into SmFe5O12 can effectively tune its dielectric and magnetic loss. Encouragingly, when the mass ratio of SmFe5O12 to CoFe2O4 is 1:3, the rGO/SmFe5O12/CoFe2O4 ternary nanocomposite possesses the maximum reflection loss (RL) of - 73.71 dB at 14.88 GHz with a thickness of 2.09 mm. The effective bandwidth (RL -10 dB) of the as-synthesized sample is 7.12 GHz (from 10.80 to 17.92 GHz) with a thickness of 2.18 mm, which is higher than that of most microwave absorbers reported previously. Noticeably, the superior microwave adsorption performance of as-synthesized samples can be mainly attributed to the synergistic effect of dipole polarization, interfacial polarization, natural resonance, eddy current loss, multiple scattering and reflection. These results show that the as-synthesized rGO/SmFe5O12/CoFe2O4 ternary composites are promising candidates for the application in microwave adsorption with high reflection loss, broad bandwidth, lightweight and thin thickness.
机译:设计和合成具有强吸收能力和宽带宽的铁氧体基复合材料仍然是一个挑战。在这项工作中,首先,通过简便的水热法合成了具有不同质量比的SmFe5O12与CoF​​e2O4的二元SmFe5O12 / CoFe2O4复合材料。接下来,向SmFe5O12 / CoFe2O4溶液中添加10 mg氧化石墨(GO),使用一锅水热技术制备一系列新型的还原型氧化石墨烯(rGO)/ SmFe5O12 / CoFe2O4三元纳米复合材料。通过XRD,拉曼,TEM,SEM,XPS和VSM对合成后的纳米复合材料的微观结构,形貌,化学组成和磁性进行了表征。 SmFe5O12的磁性能随CoFe2O4和rGO的添加而变化。微波吸收率的测量是通过矢量网络分析仪进行的,合成后的样品表现出出色的可调谐微波吸收性能。在本文中,将CoFe2O4和rGO引入SmFe5O12可以有效地调节其介电和磁损耗。令人鼓舞的是,当SmFe5O12与CoF​​e2O4的质量比为1:3时,rGO / SmFe5O12 / CoFe2O4三元纳米复合材料在14.88 GHz时的最大反射损耗(RL)为-73.71 dB,厚度为2.09 mm。合成样品的有效带宽(RL <-10 dB)为7.12 GHz(从10.80至17.92 GHz),厚度为2.18 mm,高于先前报道的大多数微波吸收器。值得注意的是,合成样品的优异微波吸附性能主要归因于偶极极化,界面极化,自然共振,涡流损耗,多次散射和反射的协同效应。这些结果表明,合成后的rGO / SmFe5O12 / CoFe2O4三元复合材料具有高反射损耗,宽带宽,轻量和薄厚度等优点,有望用于微波吸附。

著录项

  • 来源
    《Applied Surface Science》 |2018年第30期|464-476|共13页
  • 作者单位

    Beijing Univ Chem Technol, State Key Lab Chem Resource Engn, Beijing 100029, Peoples R China;

    Beijing Univ Chem Technol, State Key Lab Chem Resource Engn, Beijing 100029, Peoples R China;

    Beijing Univ Chem Technol, State Key Lab Organ Inorgan Composites, Beijing 100029, Peoples R China;

    Beijing Univ Chem Technol, State Key Lab Chem Resource Engn, Beijing 100029, Peoples R China;

    China Japan Friendship Hosp, Dept Urol, Beijing 100029, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ternary nanocomposites; Ferrite; rGO; Reflection loss; Impedance matching; Microwave absorption;

    机译:三元纳米复合材料铁氧体rGO反射损耗阻抗匹配微波吸收;

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