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首页> 外文期刊>ACS applied materials & interfaces >Design of Electrical Conductive Composites: Tuning the Morphology to Improve the Electrical Properties of Graphene Filled Immiscible Polymer Blends
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Design of Electrical Conductive Composites: Tuning the Morphology to Improve the Electrical Properties of Graphene Filled Immiscible Polymer Blends

机译:导电复合材料的设计:调整形态以改善石墨烯填充的不互溶聚合物共混物的电性能

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摘要

Polystyrene (PS) and poly(methyl methacrylate) (PMMA) blends filled with octadecylamine-functionalized graphene (GE-ODA) have been fabricated to obtain conductive composites with a lower electrical percolation threshold according to the concept of double percolation. The dependence of the electrical properties of the composites on the morphology is examined by changing the proportion of PS and PMMA Our results reveal that the electrical conductivity of the composites can be optimal when PS and PMMA phases form a cocontinuous structure and GE-ODA nanosheets are selectively located and percolated in the PS phase. For the PS/PMMA blend (50w/50w), the composites exhibit an extremely low electrical percolation threshold (O.S.wt %) because of the formation of a perfect double percolated structure. Moreover, the rheological properties of the composites are also measured to gain a fundamental understanding of the relationship between microstructure and electrical properties.
机译:根据双重渗透的概念,已制备了填充有十八烷基胺官能化石墨烯(GE-ODA)的聚苯乙烯(PS)和聚甲基丙烯酸甲酯(PMMA)共混物,以获得具有较低电渗透阈值的导电复合材料。通过改变PS和PMMA的比例来检查复合材料的电学性质对形态的依赖性。我们的结果表明,当PS和PMMA相形成共连续结构且GE-ODA纳米片形成时,复合材料的电导率可以达到最佳。在PS相中选择性定位并渗透。对于PS / PMMA共混物(50w / 50w),由于形成了完美的双重渗透结构,因此复合材料的电渗透阈值非常低(O.S.wt%)。此外,还对复合材料的流变性能进行了测量,以基本了解微观结构和电性能之间的关系。

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