向忠宁, 何秦川, 王益群, 任良贵. 中空SiC球形纳米颗粒的合成及吸波性能[J]. 有色金属科学与工程, 2022, 13(1): 83-92. DOI: 10.13264/j.cnki.ysjskx.2022.01.011
引用本文: 向忠宁, 何秦川, 王益群, 任良贵. 中空SiC球形纳米颗粒的合成及吸波性能[J]. 有色金属科学与工程, 2022, 13(1): 83-92. DOI: 10.13264/j.cnki.ysjskx.2022.01.011
XIANG Zhongning, HE Qinchuan, WANG Yiqun, REN Lianggui. Synthesis and wave absorption properties of hollow SiC spherical nanoparticles[J]. Nonferrous Metals Science and Engineering, 2022, 13(1): 83-92. DOI: 10.13264/j.cnki.ysjskx.2022.01.011
Citation: XIANG Zhongning, HE Qinchuan, WANG Yiqun, REN Lianggui. Synthesis and wave absorption properties of hollow SiC spherical nanoparticles[J]. Nonferrous Metals Science and Engineering, 2022, 13(1): 83-92. DOI: 10.13264/j.cnki.ysjskx.2022.01.011

中空SiC球形纳米颗粒的合成及吸波性能

Synthesis and wave absorption properties of hollow SiC spherical nanoparticles

  • 摘要: 特殊结构和组成是决定电磁波吸收性能的关键因素。采用自组装技术合成碳包覆二氧化硅(SiO2@C)的球形纳米颗粒,经高温热处理后制备出中空SiC球形纳米颗粒。通过扫描电镜(SEM)和X射线衍射仪(XRD)对样品进行微观形貌分析和物相分析,采用矢量网络分析仪对样品的电磁参数进行测试,借助SiC的介电损耗以及其特殊的微观结构对其吸波性能进行调控,并模拟计算不同涂层厚度下样品的反射损耗(RL)。结果表明,随着SiO2@C中碳含量的增加,经高温热处理后生成的SiC纳米颗粒由不规则的形状转变为中空球形纳米颗粒结构。在频率为14.06 GHz时,样品的最小反射损耗(RLmin)为-18.23 dB,有效吸收频带(RL≤-10 dB)达到了5.34 GHz,对应的涂层厚度为1.9 mm,体现出厚度薄、吸收频带宽的特点。

     

    Abstract: Special structure and composition are the key factors in determining electromagnetic wave absorption performance. In this study, spherical nanoparticles of carbon-coated silica (SiO2@C) were synthesized by self-assembly technique, and then the hollow SiC spherical nanoparticles were prepared via high temperature heat-treatment. The morphology and phase of the samples were analyzed by scanning electron microscopy (SEM) and X-ray diffraction (XRD), and the electromagnetic parameters of the samples were tested by the vector network analyzer. The absorbing performance of SiC was regulated with the help of its dielectric loss and special microstructure, and the reflection loss (RL) of the samples with different coating thicknesses was calculated. The results showed that SiC nanoparticles produced by high temperature heat-treatment had been transformed from irregular shape to hollow spherical structure with the increase of carbon content in SiO2@C. When the frequency was 14.06 GHz, the minimum reflection loss (RLmin) was -18.23 dB, and the effective absorption bandwidth (RL≤-10 dB) reached 5.34 GHz with a corresponding coating thickness of 1.9 mm, reflecting the characteristics of thin thickness and wide absorption band.

     

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