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A facile one-pot method to synthesize a three-dimensional graphene@carbon nanotube composite as a high-efficiency microwave absorber

机译:一种简便的一锅法合成三维石墨烯@碳纳米管复合材料作为高效微波吸收剂

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摘要

A novel three-dimensional graphene@carbon nanotube (CNTs) composite has been prepared using a facile one-pot pyrolysis strategy using urea as the carbon source, in which the density and length of CNTs on graphene are rationally tuned by adding an appropriate amount of urea to a precursor mixture. Correspondingly, the density and length of CNTs on graphene have a significant effect on the microwave absorption properties of graphene@CNTs. When most of the graphene surface is clearly covered by the CNTs whose length ranges from 300 to 600 nm, the graphene@CNT composite exhibits excellent microwave absorption properties. The maximum reflection loss value can reach -44.6 dB at 8.6 GHz and the absorption bandwidth with a reflection loss below -10 dB ranges from 7.1 to 10.4 GHz with an addition amount of only 5 wt% graphene@CNTs composite in the paraffin matrix.
机译:使用尿素作为碳源,采用简便的一锅法热解策略制备了新颖的三维石墨烯@碳纳米管复合材料,其中通过添加适量的碳纳米管来合理地调节碳纳米管在石墨烯上的密度和长度。尿素为前体混合物。相应地,碳纳米管在石墨烯上的密度和长度对石墨烯@CNT的微波吸收性能有显着影响。当长度范围为300至600 nm的CNT清楚地覆盖了大部分石墨烯表面时,石墨烯@CNT复合材料表现出优异的微波吸收性能。最大反射损耗值在8.6 GHz时可达到-44.6 dB,反射带宽低于-10 dB的吸收带宽在7.1至10.4 GHz范围内,石蜡基体中石墨烯@CNTs复合物的添加量仅为5 wt%。

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