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Electrical, Mechanical Properties and Morphology of SEBS-g-MAH/Graphene Nanocomposites

机译:SEBS-G-MAH /石墨烯纳米复合材料的电气,力学性能和形态

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Poly (styrene-b-(ethylene-co-butylene)-b-styrene) (SEBS) is a kind of thermal plastic elastomer,and is widely used as materials in automobile,biomedical device,package,electrical equipment field,etc.However,the limited mechanical and electrical properties of SEBS could not be restricted in certain field.Due to the monolayer of perfectly two dimensional lattice of pure spa-bonded carbon atoms,graphene shows many extraordinary properties,such as electrical,optical,thermal,mechanical properties[1].It has been widely used as a nanofiller in the preparation of polymer nanocomposites to enhance the mechanical properties,electrical properties,gas blocking properties,thermal properties of the polymer matrix[2].However,pristine graphene is not compatible with organic polymers and does not form homogeneous composites.In addition,the van der Waals force between the interlayers lead to reunion of graphene,causing a great reduction of its performance[3].
机译:聚(苯乙烯-B-(乙烯 - 丁烯)-B-苯乙烯)(SEBS)是一种热塑性弹性体,广泛用作汽车,生物医学装置,包装,电气设备领域等材料。然而,SEB的有限机械和电性能不能限制在某些领域中。对于完全二维晶格的单层,石墨烯显示出许多非凡的性质,例如电气,光学,热,机械性能[1]。已经广泛用作聚合物纳米复合材料的制备中的纳米填充物,以增强机械性能,电性能,气体阻滞性能,聚合物基质的热性能[2]。无论,原始石墨烯都不兼容有机聚合物和不形成均匀复合材料。另外,中间层之间的范德瓦尔斯力导致石墨烯的重聚,导致其性能的大大降低[3]。

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