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Solvent-Free Preparation of High-Toughness Epoxy-SWNT Composite Materials

机译:无溶剂制备高韧性环氧树脂-SWNT复合材料

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Multicomponent nanocomposite materials based on a high-performance epoxy system and single-walled carbon nanotubes (SWNTs) have been prepared. The noncovalent wrapping of nitric acid-treated SWNTs with a PEO-based amphiphilic block copolymer leads to a highly disaggregated filler with a boosted miscibility in the epoxy matrix, allowing its dispersion without organic solvents. Although direct dispersion of acid-treated SWNTs results in modesdy improved epoxy matrix mechanical properties, the incorporation of wrapped SWNTs produces a huge increase in toughness (276% improvement at 0.S wt % loading) and impact strength (193% at 0.5 wt % loading) with no detrimental effect on the elastic properties. A synergistic effect between SWNTs and the block copolymer is revealed on the basis of tensile and impact strength results. Atomic force microscopy has been applied, obtaining stiffness mappings that identify nanostructure features responsible of the dynamic mechanical behavior. The electrical percolation threshold is greatly reduced, from 0.31 to 0.03 wt % SWNTs when block copolymer-wrapped SWNTs are used, and all the measured conductivity values increased up to a maximum of 7 orders of magnitude with respect to the baseline matrix (l wt % wrapped-SWNTs loading). This approach provides ah efficient way to disperse barely dispersible SWNTs without solvents into an epoxy matrix, and to generate substantial improvements with small amounts of SWNTs.
机译:已经制备了基于高性能环氧体系和单壁碳纳米管(SWNT)的多组分纳米复合材料。硝酸处理的单壁碳纳米管与基于PEO的两亲嵌段共聚物的非共价包裹会导致填料高度分散,在环氧基质中的混溶性增强,从而使其无需有机溶剂即可分散。尽管酸处理的单壁碳纳米管的直接分散可改善环氧基质的机械性能,但掺入包裹的单壁碳纳米管可显着提高韧性(0.S重量%负载时提高276%)和冲击强度(0.5重量%时为193%)载荷)对弹性没有不利影响。根据拉伸强度和冲击强度结果,揭示了单壁碳纳米管与嵌段共聚物之间的协同作用。原子力显微镜已得到应用,获得了刚度图,该图确定了负责动态力学行为的纳米结构特征。当使用嵌段共聚物包裹的单壁碳纳米管时,电渗透阈值从0.31 wt%大大降低到0.03 wt%,相对于基线基质,所有测得的电导率值增加到最大7个数量级(1 wt%包裹式SWNT)。这种方法提供了一种有效的方法,可以将没有溶剂的几乎不可分散的SWNT分散到环氧基质中,并用少量的SWNT产生实质性的改进。

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