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Fine Tuning of Electrical Transport and Dielectric Properties of Epoxy/Carbon Nanotubes Composites via Magnesium Oxide Additives

机译:通过氧化镁添加剂微调环氧/碳纳米管复合材料的电输运和介电性能

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摘要

The dielectric properties of epoxy/MWCNT (multi-walled carbon nanotubes)/MgO hybrid composites with a fixed MWCNT amount of 0.12 vol.% (0.2 wt.%) and varying MgO concentrations up to 3 vol.% were investigated in broad frequency (20–40 GHz) and temperature (20–500 K) ranges. The composites with up to 2 vol.% MgO nanoparticles concentration showed a significant increase of DC conductivity in relation to their non MgO-containing counterparts. The optimal content of MgO was found, i.e., 0.46 vol.%, which gave up to 2.5 orders of magnitude larger DC conductivity than those of the samples prepared without MgO additives. Using various amounts of MgO, it is possible to predictably vary the broadband electromagnetic properties of the composites, even entirely eliminating the electrical percolation. Electrical transport at different temperatures can be substantially controlled by the addition of given amounts of MgO. The broadband properties are discussed in terms of the distribution of relaxation times, which are proven to be an effective, noninvasive, and simple tool for checking composite fabrication issues, such as the distribution of MWCNT aggregates within the epoxy matrix.
机译:固定频率为0.12%(体积)(0.2%(重量))的MWCNT(多壁碳纳米管)/ MgO杂化复合材料的介电性能在宽泛的频率下进行了研究( 20–40 GHz)和温度(20–500 K)范围。相对于不含MgO的对应物,具有最高2%(体积)MgO纳米颗粒浓度的复合材料显示出直流电导率的显着提高。发现最佳的MgO含量,即0.46vol。%,比没有MgO添加剂制备的样品的直流电导率高2.5个数量级。使用各种量的MgO,可以预测地改变复合材料的宽带电磁性能,甚至完全消除电渗流。通过添加给定量的MgO,可以基本上控制不同温度下的电传输。根据弛豫时间的分布讨论了宽带性能,事实证明,该弛豫时间是检查复合材料制造问题(例如MWCNT聚集体在环氧基质中的分布)的有效,无创且简单的工具。

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