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Co含量对MOFs衍生的片状Co/C复合材料吸波性能的影响
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1.火箭军工程大学;2.中国人民解放军96964部队

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TB34

基金项目:

国防科技基础加强计划技术领域基金(2020-JCJQ-JJ-222);国家自然科学基金资助(51905542);陕西省“特支计划”科技资助(陕组通字(2020)44)


Co Content on Microwave Absorption Property of MOFs-derived Flaky Co/C Composites
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Affiliation:

1.Rocket Force University of Engineering,Xi’an;2.No96964 Unit of PLA

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    摘要:

    金属有机骨架(MOFs)衍生的磁性金属/碳复合材料在轻质吸波材料领域展现出巨大的潜力。以二维片状结构Co/Zn双金属MOFs为前驱体通过高温热解合成片状Co/C复合材料,系统研究了前驱体中Co/Zn摩尔比对复合材料形貌结构、石墨化程度、磁性能和吸波性能的影响。结果表明:金属Co纳米微粒在碳骨架中均匀分布,随着Co含量的减少,复合材料中碳组分的石墨化程度逐渐降低,铁磁特性逐渐减弱;片状Co/C复合材料的吸波性能随着Co含量的降低先增强后减弱,填充比例为30 wt%、Co/Zn摩尔比为4:1时片状Co/C复合材料具有最佳吸波性能,厚度为2.11 mm时在10.8 GHz处最小反射率为-23.09 dB,最大有效带宽(反射率小于-10 dB)在厚度为1.62 mm时达到4.96 GHz。复合材料良好的吸波性能是由于均匀分布的磁性Co纳米粒子和碳骨架的协同作用,在增强电磁波导电损耗和界面极化损耗的同时,改善了阻抗匹配性能。

    Abstract:

    Metal-organic framework (MOFs)-derived magnetic metal/carbon composites have shown tremendous potential for lightweight microwave absorption materials. Flaky Co/C composites were synthesized by pyrolysis process using two-dimensional flaky Co/Zn bimetallic MOFs as precursors. The effects of Co/Zn molar ratios in the precursor on the morphology structure, graphitization degree, magnetic properties and microwave absorption properties of the composites were investigated. As a result, Co nanoparticles are uniformly distributed in the carbon framework, As the Co content decreases, the graphitization degree of carbon components in composites is decreased, and the magnetic properties are weakened. The microwave absorption properties of flaky Co/C composites are first enhanced and then weakened with the decrease of Co content. The composite with the filling ratio of 30 wt% and Co/Zn molar ratio of 4:1 shows the best microwave absorption properties. The minimum reflection loss (RL) of ?23.09 dB is achieved at 10.8 GHz with the thickness of 2.11 mm. The maximum effective bandwidth (RL≤?10 dB) reaches 4.96 GHz with the thickness of 1.62 mm. The excellent microwave absorption performance of composites mainly due to the synergistic effects of uniformly distributed magnetic Co nanoparticles and carbon frameworks, which enhanced the conduction loss and interfacial polarization and improved the impedance matching.

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葛超群,汪刘应,刘 顾,牟亚军,王 龙,许可俊,王伟超. Co含量对MOFs衍生的片状Co/C复合材料吸波性能的影响[J].稀有金属材料与工程,2022,51(3):960~969.[Ge Chaoqun, Wang Liuying, Liu Gu, Mu Yajun, Wang Long, Xu Kejun, Wang Weichao. Co Content on Microwave Absorption Property of MOFs-derived Flaky Co/C Composites[J]. Rare Metal Materials and Engineering,2022,51(3):960~969.]
DOI:10.12442/j. issn.1002-185X.20210244

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  • 收稿日期:2021-03-22
  • 最后修改日期:2021-05-06
  • 录用日期:2021-05-13
  • 在线发布日期: 2022-04-06
  • 出版日期: 2022-03-30