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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Two-layer materials of polyethylene and a carbon nanotube/ cyanate ester composite with high dielectric constant and extremely low dielectric loss
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Two-layer materials of polyethylene and a carbon nanotube/ cyanate ester composite with high dielectric constant and extremely low dielectric loss

机译:具有高介电常数和极低介电损耗的聚乙烯和碳纳米管/氰酸酯复合材料的两层材料

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摘要

Double-layer materials with one layer being a polyethylene (PE) film and the other layer a multi-wall carbon nanotube (MWCNT)/cyanate ester (CE) resin composite, PE-MWCNT/CE, were prepared. They have high dielectric constant and extremely low dielectric loss. For comparison, MWCNT/CE composites with different contents of MWCNTs were also prepared. Results show that the two kinds of materials have greatly different dielectric properties. With the same content of MWCNTs, the PE-MWCNT/CE material shows a higher dielectric constant and much lower dielectric loss than the MWCNT/CE composite. More specifically, the dielectric constant and loss tangent at 10 Hz of the PE-MWCNT/CE material with 0.5 wt.% MWCNTs are respectively 168 and 0.006, about 1.4 and 2.5 × 10~(-5) times the values of the corresponding MWCNT/CE composite. The nature behinds these interesting data was detected from the space charge polarization effect and equivalent circuits. The mechanism for the unique dielectric behavior of the PE-MWCNT/CE materials is that the presence of PE film not only reinforces the space charge polarization, but also subdues the leakage current. On the other hand, based on the discussion on the Cole-Cole plots, an effective method is developed to accurately calculate the relaxation time of space charge polarization in electric conductor/polymer materials.
机译:制备了双层材料,其中一层是聚乙烯(PE)膜,另一层是多层碳纳米管(MWCNT)/氰酸酯(CE)树脂复合材料PE-MWCNT / CE。它们具有高介电常数和极低的介电损耗。为了比较,还制备了具有不同含量的MWCNT的MWCNT / CE复合材料。结果表明,两种材料的介电性能差异很大。在相同含量的MWCNT的情况下,PE-MWCNT / CE材料比MWCNT / CE复合材料显示出更高的介电常数和更低的介电损耗。更具体地说,具有0.5wt。%的MWCNT的PE-MWCNT / CE材料的介电常数和在10Hz处的损耗角正切分别是对应的MWCNT的值的168和0.006,约1.4和2.5×10〜(-5)倍。 / CE复合。这些有趣的数据背后的本质是从空间电荷极化效应和等效电路中检测到的。 PE-MWCNT / CE材料独特的介电性能的机理是,PE膜的存在不仅增强了空间电荷极化,而且还抑制了泄漏电流。另一方面,基于对Cole-Cole图的讨论,开发了一种有效的方法来精确计算电导体/聚合物材料中空间电荷极化的弛豫时间。

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