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Dispersibility of different sized graphene oxide sheets and their reinforcement on polyamide 6 fibers

机译:不同尺寸氧化石墨烯片的分散性及其在聚酰胺6纤维上的增强

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Dispersibility of graphene oxide (GO) as a nano-reinforcer plays a crucial role in polymer-based nanocomposites. However, it is still uncertain whether lateral dimensions of GO could affect their dispersibility in polymer matrix. In this work, crude GO (CGO) was fractionated into large sized GO (LGO), medium sized GO (MGO) and small sized GO (SGO), through in situ polymerization on the fractionated GO (f-GO) surfaces, caprolactam (CPL) was polymerized and polyamide 6 (PA6) grafted GO (g-GO) was prepared, and then PA6/g-GO nanocomposite fibers were prepared through melting spinning. It is obvious that the dispersibility of GO, whatever f-GO or g-GO, increases with the decrease of its size. Particularly, SGO and PA6 grafted SGO (g-SGO) disperse much more uniformly than CGO and the other f-GO and their corresponding g-GO. As a result, PA6/g-SGO nanocomposite (SPA) fiber has outstanding mechanical properties, for example, the strength of the fiber is 5 times more than that of pure PA6 fiber.
机译:氧化石墨烯(GO)作为纳米增强剂的分散性在基于聚合物的纳米复合材料中起着至关重要的作用。然而,仍然不确定GO的横向尺寸是否会影响其在聚合物基质中的分散性。在这项工作中,通过在分馏后的GO(f)上进行原位聚合,将粗制GO(CGO)分为大尺寸GO(LGO),中型GO(MGO)和小尺寸GO(SGO)。 -GO)表面,聚合己内酰胺(CPL),制备接枝GO 6(g-GO)的聚酰胺6(PA6),然后通过熔融纺丝制备PA6 / g-GO纳米复合纤维。显然,GO(无论是f-GO还是g-GO)的分散性随其尺寸的减小而增加。特别是,SGO和PA6接枝的SGO(g-SGO)的分散比CGO和其他f-GO及其对应的g-GO更均匀。结果,PA6 / g-SGO纳米复合材料(SPA)纤维具有出色的机械性能,例如,其强度是纯PA6纤维的5倍。

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