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首页> 外文期刊>Journal of Materials Science >Dielectric control of ultralight hollow porous carbon spheres and excellent microwave absorbing properties
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Dielectric control of ultralight hollow porous carbon spheres and excellent microwave absorbing properties

机译:超轻中空多孔碳球的介电控制及优异的微波吸收性能

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摘要

Carbon materials have the potential to be excellent absorbing materials due to their lighter weight, easy-to-control graphitization degree and good dielectric properties. However, a single carbon material is often difficult to achieve the ideal electromagnetic wave attenuation effect due to the imbalance of impedance matching and the lack of magnetic loss. In this work, a simple solgel method was used to control the hydrolysis reaction of tetraethyl orthosilicate and the synthesis reaction of phenolic resin to prepare the core-shell precursor of silica coated with phenolic resin/silica spheres. After high-temperature calcination and pickling etching, hollow carbon spheres (HPC) with porous structure were obtained. By adjusting the calcination temperature, the crystallinity and dielectric properties of HPC can be easily adjusted. With an ultra-low filling ratio of 5 wt%, HPC can obtain a wide-band effective microwave absorbing performance of 5.73 GHz (2-18 GHz band) under an ultra-thin thickness of 2.0 mm, which is an excellent absorbing agent with lightweight, thin thickness, strong absorbing ability and wide absorbing band. Considering the simple preparation scheme, HPC is expected to become one of the candidates for high-efficiency microwave absorbers. The special hollow, porous structure and suitable degree of graphitization are the main reasons for the effective wave absorption of HPC.
机译:碳材料具有重量轻、石墨化程度易于控制、介电性能好等优点,有望成为优良的吸波材料。然而,由于阻抗匹配的不平衡和磁损耗的缺乏,单个碳材料往往难以达到理想的电磁波衰减效果。本工作采用简单的溶胶凝胶法控制正硅酸乙酯的水解反应和酚醛树脂的合成反应,制备了包覆酚醛树脂/二氧化硅微球的二氧化硅核壳前驱体。经过高温煅烧和酸洗刻蚀,得到了多孔结构的空心碳球。通过调节煅烧温度,可以很容易地调节HPC的结晶度和介电性能。HPC的超低填充率为5 wt%,在2.0mm的超薄厚度下可获得5.73GHz(2-18GHz频段)的宽带有效吸波性能,是一种轻质、薄、强吸收能力、宽吸收带的优良吸波剂。考虑到简单的制备方案,HPC有望成为高效微波吸收剂的候选材料之一。高性能混凝土特殊的中空、多孔结构和适宜的石墨化程度是其有效吸波的主要原因。

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  • 来源
    《Journal of Materials Science》 |2021年第11期|共15页
  • 作者单位

    Nanjing Univ Sch Elect Sci &

    Engn Nanjing 210023 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Mat &

    Technol Nanjing 211100 Peoples R China;

    Nanjing Univ Sch Elect Sci &

    Engn Nanjing 210023 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Mat &

    Technol Nanjing 211100 Peoples R China;

    Nanjing Univ Aeronaut &

    Astronaut Coll Mat &

    Technol Nanjing 211100 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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