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'Direct' grafting of linear macromolecular 'wedges' to the edge of pristine graphite to prepare edge-functionalized graphene-based polymer composites

机译:将线性大分子“楔”“直接”接枝到原始石墨的边缘,以制备边缘功能化的石墨烯基聚合物复合材料

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摘要

The edges of pristine graphite were covalently grafted with para-poly(ether-ketone) (pPEK) in a mildly acidic polyphosphoric acid (PPA)/phosphorus pentoxide (P(2)O(5)) medium. The resulting pPEK grafted graphite (pPEK-g-graphite) showed that the pristine graphite had been exfoliated into a few layers of graphene platelets (graphene-like sheets), which were uniformly dispersed into a pPEK matrix. As a result, the tensile properties of pPEK-g-graphite films were greatly improved compared to those of controlled pPEK films. The origins of these enhanced mechanical properties were deduced from scanning electron microscope (SEM) images of fracture surfaces. Upon tracing wide-angle X-ray scattering (WAXS) patterns of the film under strain, the graphene-like sheets were further exfoliated by an applied shear force, suggesting that a toughening mechanism for the pPEK-g-graphite film occurred. This approach envisions that the "direct'' edge grafting of pristine graphite without pre-treatments such as corrosive oxidation and/or destructive sonication is a simple and efficient method to prepare graphene-based polymer composites with enhanced mechanical properties.
机译:原始石墨的边缘在中等酸性的多磷酸(PPA)/五氧化二磷(P(2)O(5))介质中与对-聚(醚-酮)(pPEK)共价接枝。所得的pPEK接枝石墨(pPEK-g-石墨)表明,原始石墨已被剥落成几层石墨烯薄片(石墨烯状片),其均匀地分散在pPEK基质中。结果,与受控的pPEK膜相比,pPEK-g-石墨膜的拉伸性能大大提高。这些增强的机械性能的起源是从断裂表面的扫描电子显微镜(SEM)图像推导出来的。追踪薄膜在应变下的广角X射线散射(WAXS)图案后,石墨烯状片材通过施加的剪切力进一步剥落,这表明pPEK-g-石墨薄膜发生了增韧机制。这种方法预见到,未经预处理(例如,腐蚀性氧化和/或破坏性超声处理)的原始石墨的“直接”边缘接枝是制备机械性能增强的石墨烯基聚合物复合材料的简单有效的方法。

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