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DC current in nanosilica-based polyethylene nanocomposites

机译:纳米二氧化硅基聚乙烯纳米复合材料中的直流电流

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摘要

In the present paper, DC current of polyethylene nanocomposites containing different nanosilica loading ratios, either the untreated or the surface treated using the trimethoxy(propyl)silane coupling agent has been investigated. TGA was used to identify the true loading concentration in the samples and the nanofillers dispersion was studied using SEM. A range of electric field from 10 kV/mm to 50 kV/mm were applied It has been found that two dynamic processes are involved in the current observed over a period of 3 hours. Initial process was dominated by trap filling where a decreasing current versus time was observed. The second process was related to transient space charge limited current in the unfilled sample but taken over by the effect of nanofillers which shows a continuous current increase versus time rather than peaking. The exact mechanism responsible for the increasing current is not known yet. The influence of surface treatment of the nanofillers on the current is significant, resulting in a lower current comparing with the untreated samples. A current dip has been observed for samples with lower loading concentration, supporting the deep trap concept
机译:在本文中,已经研究了含有不同纳米二氧化硅负载比的聚乙烯纳米复合材料的直流电流,无论是未处理的还是使用三甲氧基(丙基)硅烷偶联剂进行表面处理的。用TGA鉴定样品中的真实负载浓度,并使用SEM研究纳米填料的分散体。施加了从10 kV / mm到50 kV / mm的电场范围,发现在3个小时的时间内观察到的电流涉及两个动态过程。初始工艺以陷阱填充为主,观察到电流随时间减小。第二个过程与未填充样品中的瞬态空间电荷限制电流有关,但被纳米填充剂的影响所取代,纳米填充剂显示电流随时间连续增加而不是达到峰值。导致电流增加的确切机制尚不清楚。纳米填料的表面处理对电流的影响很大,与未处理的样品相比,电流更低。观察到低浓度样品的电流下降,支持深阱概念

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