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Triple percolation behavior and positive temperature coefficient effect of conductive polymer composites with especial interface morphology

机译:具有特殊界面形态的导电聚合物复合材料的三重渗透行为和正温度系数效应

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摘要

Selective localization of carbon black (CB) at the interface of polymer blends was achieved by the method that poly(styrene-co-maleic anhydride) (SMA) was first reacted with CB, and then blended with nylon6/polystyrene (PA6/PS). In the PA6/PS blends, CB was localized in PA6 phase and typical double percolation was exhibited. In the PA6/PS/(SMA-CB) blends, TEM results showed that CB particles were induced by SMA to localize at the interface, resulting in the especial interface morphology fabricated by SMA and CB. The especial interface morphology of PA6/PS/(SMA-CB) caused distinct triple percolation behavior and very low percolation threshold. The positive temperature coefficient (PTC) intensity of PA6/PS/(SMA-CB) composites was stronger than that of PA6/PS/CB and the negative temperature coefficient (NTC) effect was eliminated. The elimination of NTC effect was arisen from the especial interface morphology. A stronger PTC intensity was attributed to the low percolation threshold and the morphology.
机译:炭黑(CB)在聚合物共混物界面上的选择性定位是通过以下方法实现的:首先使聚(苯乙烯-马来酸酐)(SMA)与CB反应,然后与尼龙6 /聚苯乙烯(PA6 / PS)共混。 。在PA6 / PS共混物中,CB位于PA6相中,并表现出典型的双重渗滤。在PA6 / PS /(SMA-CB)共混物中,TEM结果表明,SMA诱导CB颗粒位于界面处,从而导致SMA和CB形成了特殊的界面形态。 PA6 / PS /(SMA-CB)的特殊界面形态导致明显的三重渗透行为和极低的渗透阈值。 PA6 / PS /(SMA-CB)复合材料的正温度系数(PTC)强度比PA6 / PS / CB复合材料的正温度系数强度强,并且消除了负温度系数(NTC)效应。 NTC效应的消除是由特殊的界面形态引起的。较低的渗透阈值和形态是PTC强度较高的原因。

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