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Thermomechanical Behavior of Polymer Composites Based on Edge-Selectively Functionalized Graphene Nanosheets

机译:基于边缘选择性功能化石墨烯纳米片的聚合物复合材料的热力学行为

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摘要

In this study, we demonstrate an effective approach based on a simple processing method to improve the thermomechanical properties of graphene polymer composites (GPCs). Edge-selectively functionalized graphene (EFG) was successfully obtained through simple ball milling of natural graphite in the presence of dry ice, which acted as the source of carboxyl functional groups that were attached to the peripheral basal plane of graphene. The resultant EFG is highly dispersible in various organic solvents and contributes to improving their physical properties because of its unique characteristics. Pyromellitic dianhydride (PMDA) and 4,4′-oxydianiline (ODA) were used as monomers for constructing the polyimide (PI) backbone, after which PI/EFG composites were prepared by in situ polymerization. A stepwise thermal imidization method was used to prepare the PI films for comparison purposes. The PI/EFG composite films were found to exhibit reinforced thermal and thermo-mechanical properties compared to neat PI owing to the interaction between the EFG and PI matrix.
机译:在这项研究中,我们展示了一种基于简单加工方法的有效方法,可以改善石墨烯聚合物复合材料(GPC)的热机械性能。通过在干冰的存在下对天然石墨进行简单的球磨,成功地获得了边缘选择性官能化的石墨烯(EFG),干冰是附着在石墨烯外围基础平面上的羧基官能团的来源。所得的EFG可高度分散于各种有机溶剂中,并因其独特的特性而有助于改善其物理性能。均苯四甲酸二酐(PMDA)和4,4'-氧二苯胺(ODA)用作构建聚酰亚胺(PI)主链的单体,然后通过原位聚合制备PI / EFG复合材料。为了比较目的,使用逐步热酰亚胺化方法来制备PI膜。与纯PI相比,由于EFG和PI基质之间的相互作用,发现PI / EFG复合膜表现出增强的热和热机械性能。

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