首页> 外文期刊>Journal of Materials Science >Core-shell rubbery fillers for massive electrical conductivity enhancement and toughening of polystyrene-graphene nanoplatelet composites
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Core-shell rubbery fillers for massive electrical conductivity enhancement and toughening of polystyrene-graphene nanoplatelet composites

机译:核-壳橡胶状填料,可大幅提高聚苯乙烯-石墨烯纳米片状复合材料的电导率并使其增韧

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Graphene nanoplatelets (GNPs) are an attractive additive for polymers to provide electrical conductivity to a composite. If the GNP surface and the polymer are incompatible, the interfaces are weak, resulting in a large drop in the flexural strength and toughness of the composite compared to the native polymer. In the present study, we show that adding core-shell rubbery (CSR) nanoparticles, that have a polyisobutadiene (PIB) core and a thin, polystyrene (PS) compatible shell, to a PS-GNP composite enhances the dispersion of the GNP and suppresses their restacking, increasing the electrical conductivity of the composite by several orders of magnitude. In addition, there is complete recovery of the flexural strength and a large increase in toughness compared to PS samples without fillers. The recovery of the mechanical properties is related to a uniform distribution of the CSR and good binding at the interfaces because of the compatibility of the filler surface with the PS matrix, as well as the rubbery nature of the PIB core. This strategy of using a second filler as both a toughening agent as well as a dispersion aid breaks a commonly encountered tradeoff between electrical and mechanical property enhancement by fillers. It can be deployed for applications where both a high electrical conductivity and excellent mechanical properties of polymer composites are desired.
机译:石墨烯纳米片(GNP)是聚合物的诱人添加剂,可为复合材料提供导电性。如果GNP表面和聚合物不相容,则界面较弱,与天然聚合物相比,复合材料的弯曲强度和韧性会大大下降。在本研究中,我们表明,将具有聚异丁二烯(PIB)核和薄的聚苯乙烯(PS)相容壳的核-壳橡胶状(CSR)纳米颗粒添加到PS-GNP复合物中,可以增强GNP和抑制了它们的重新堆积,从而将复合材料的电导率提高了几个数量级。此外,与不含填料的PS样品相比,弯曲强度得到了完全恢复,韧性大大提高。机械性能的恢复与CSR的均匀分布和在界面处的良好粘合有关,这是因为填料表面与PS基体的相容性以及PIB芯的橡胶性质。使用第二种填充剂作为增韧剂和分散助剂的这种策略打破了填充剂在电和机械性能增强之间的常见折衷。它可以部署在既需要高导电率又需要聚合物复合材料优异机械性能的应用中。

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