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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Remarkably improved electrical insulating performances of lightweight polypropylene nanocomposites with fullerene
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Remarkably improved electrical insulating performances of lightweight polypropylene nanocomposites with fullerene

机译:具有富勒烯轻质聚丙烯纳米复合材料的显着改善了电绝缘性能

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A polypropylene/fullerene nanocomposite was fabricated via solution processing with good dispersion of the fullerene nanoparticles. It was observed that a small amount of fullerene (similar to 1 wt. parts per thousand) can significantly improve the direct current (DC) electrical insulation performance (i.e. improved space charge distribution, greater DC dielectric breakdown strength, and larger DC volume resistivity) of polypropylene. Thermally stimulated depolarization current tests indicate that fullerene doping remarkably increases the deep trap density of pure polypropylene. The mechanisms by which the electrical properties of the polypropylene nanocomposites were improved are the introduction of deep traps and the high electron affinity of fullerene. The deep traps result from the interfaces between polypropylene and fullerene. This work provides a potential method to tailor lightweight nanodielectric materials with excellent electrical insulating performances.
机译:通过具有良好分散的富勒烯纳米颗粒的溶液加工制造聚丙烯/富勒烯纳米复合物。 观察到少量富勒烯(类似于1重量份)可以显着提高直流(DC)电绝缘性能(即改善的空间电荷分布,更高的DC介电击穿强度,以及更大的DC体积电阻率) 聚丙烯。 热刺激的去极化电流试验表明,富勒烯掺杂显着增加了纯聚丙烯的深阱密度。 改善了聚丙烯纳米复合材料的电特性的机制是引入深陷阱和富勒烯的高电子亲和力。 深陷阱由聚丙烯和富勒烯之间的界面产生。 该工作提供了具有优异的电绝缘性能的轻质纳米电材料的潜在方法。

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