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Preparation of nitrogen and sulfur co-doped graphene/ Fe_3O_4/C nanocomposite and study on the absorbing properties

机译:氮气和硫的制备氮和硫磺共掺杂石墨烯/ Fe_3O_4 / C纳米复合材料及吸收性能研究

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摘要

Nitrogen and sulfur co-doped graphene oxide (NS-GO) is obtained using a simple hydrothermal method using thiourea as nitrogen source and sulfur source, and then nitrogen and sulfur co-doped graphene/Fe_3O_4 (NS-rGO/ Fe_3O_4) composite is synthesized by a solvent method. On this basis, nitrogen and sulfur co-doped graphene/Fe_3O_4/C nanocomposite (NS-rGO/Fe_3O_4/C) is obtained using a solvent method combined with a high temperature calcination process using pitch as carbon source. When the matching thickness is 2.7 mm, the NS-rGO/Fe_3O_4/C has a reflection loss peak at 10.56 GHz, the value of which is - 46.33 dB, and the effective absorption (RL ≤ - 10 dB) bandwidth of the nanocomposite is 5.04 GHz. Compared with NS-rGO/Fe_3O_4, the NS-rGO/ Fe_3O_4/C shows higher reflection loss (RL) value, thinner matching thickness and wider effective absorption (RL ≤ -10 dB) bandwidth. The presence of amorphous carbon regulates the dielectric parameters of the material and increases the interface of the material. Sulfur and nitrogen diatoms regulate the band gap of graphene, and the composite material has good impedance matching characteristics and multiple interface effects.
机译:使用硫脲作为氮源和硫源的简单水热法获得氮和硫和硫的氧化石墨烯氧化物(NS-GO),然后合成氮气和硫含量的氮和硫含量的石墨烯/ Fe_3O_4(NS-Rgo / Fe_3O_4)复合材料通过溶剂方法。在此基础上,使用使用沥青作为碳源的高温煅烧工艺将氮和硫和硫共掺杂石墨烯/ Fe_3O_4 / C纳米复合物(Ns-Rgo / Fe_3O_4 / c)。当匹配厚度为2.7mm时,NS-RGO / FE_3O_4 / C具有10.56GHz的反射损耗峰值,其值为-46.33dB,纳米复合材料的有效吸收(RL≤ - 10dB)带宽是5.04 GHz。与NS-RGO / FE_3O_4相比,NS-RGO / FE_3O_4 / C显示了更高的反射损耗(RL)值,较薄的匹配厚度和更宽的有效吸收(RL≤-10dB)带宽。非晶碳的存在调节材料的介电参数并增加材料的界面。硫和氮气抗硫醇物调节石墨烯的带隙,复合材料具有良好的阻抗匹配特性和多种界面效应。

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  • 来源
    《Journal of materials science》 |2021年第7期|8807-8818|共12页
  • 作者单位

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

    Research Institute of Chemical Defense Beijing 102205 China School of Science Northwestern Polytechnical University Xi'an 710072 People's Republic of China;

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

    State Key Laboratory of NBC Protection for Civilian Beijing 102205 People's Republic of China Research Institute of Chemical Defense Beijing 102205 China;

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  • 正文语种 eng
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