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具有碳纳米角的渗流复合材料:低频和超高频响应。

Percolative Composites with Carbon Nanohorns: Low-Frequency and Ultra-High Frequency Response.

作者信息

Sedelnikova Olga V, Baskakova Kseniya I, Gusel'nikov Artem V, Plyusnin Pavel E, Bulusheva Lyubov G, Okotrub Alexander V

机构信息

Nikolaev Institute of Inorganic Chemistry SB RAS, 3 Acad. Lavrentiev Ave., 630090 Novosibirsk, Russia.

Laboratory for Terahertz Research, Tomsk State University, 36 Lenin Ave., 634050 Tomsk, Russia.

出版信息

Materials (Basel). 2019 Jun 6;12(11):1848. doi: 10.3390/ma12111848.

Abstract

We systematically studied the electromagnetic properties of carbon nanohorns (CNHs) and polystyrene composites filled with CNHs in static regime, low frequency and microwave regions. CNHs were synthesized using the direct current arc-discharge method using solid graphite rods and graphite rods filled by melamine mixed with graphite powder. Transmission electron microscopy and thermo-gravimetric analysis showed that CNH agglomerates are the main product, while the addition of melamine promotes the formation of graphite balls. Graphitic contamination causes the internal leakage of inter-agglomerate capacity, lowering the permittivity and enhancing the conductivity of composites. The permittivity of CNH/polystyrene composites increases with the filler fraction, and near the dielectric threshold electromagnetic characteristics of the composites exhibit critical behaviour. Our results suggest that CNHs with relatively high values of permittivity and contact resistance could be used as high- materials.

摘要

我们系统地研究了碳纳米角(CNHs)以及填充有CNHs的聚苯乙烯复合材料在静态、低频和微波区域的电磁特性。使用实心石墨棒以及填充有三聚氰胺与石墨粉混合物的石墨棒,通过直流电弧放电法合成了CNHs。透射电子显微镜和热重分析表明,CNH团聚体是主要产物,而三聚氰胺的添加促进了石墨球的形成。石墨污染导致团聚体间电容的内部泄漏,降低了复合材料的介电常数并提高了其电导率。CNH/聚苯乙烯复合材料的介电常数随填料分数增加,并且在介电阈值附近复合材料的电磁特性表现出临界行为。我们的结果表明,具有相对较高介电常数和接触电阻值的CNHs可用作高 材料。 (注:原文最后“high- materials”表述不完整,可能有遗漏信息)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a4e/6600986/5f365c2f9bd8/materials-12-01848-g001.jpg

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