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Reactive Aramid Nanostructures as High-Performance Polymeric Building Blocks for Advanced Composites

机译:反应性芳族聚酰胺纳米结构作为高性能复合材料的高性能复合材料

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摘要

Traditionally, the field of advanced nanocomposites has relied on a fairly limited set of building blocks; many with low reactivity and of limited variability. These limitations have been addressed by the creation of functionalized nanometer-scale aramid structures, in the form of nanofibers and nanosheets. These were obtained by deprotonating macroscale, commercial Kevlar yarns using potassium hydroxide in dimethyl sulfoxide to yield stable dispersions of nanometer-scale aramid fibers that were then hydrolyzed using phosphoric acid (PA). To illustrate the use of these functionally-active nanostructures as building blocks for nanocomposites, they were crosslinked by glutaraldehyde (CA), and formed into macroscopic thin films by vacuum-assisted filtration. It was shown that the mechanical properties of these PA/CA treated films can be tuned by varying the amounts of PA and CA used during synthesis, adjusting the relative amounts of hydrolysis and polymerization. These results are the first demonstration that aramid nanometer-scale fibers can be used to form versatile nanometer-sized building blocks that can then be crosslinked to fabricate a wide variety of nanostructured aramid materials with tailorable properties.
机译:传统上,高级纳米复合材料领域依靠的是一组相当有限的构件。许多具有低反应性和有限的可变性。通过创建功能化的纳米级芳族聚酰胺结构(以纳米纤维和纳米片的形式)解决了这些限制。这些是通过在二甲亚砜中使用氢氧化钾使大型商品凯夫拉尔纱线去质子化而得到的,其稳定的纳米级芳族聚酰胺纤维分散体随后被磷酸(PA)水解。为了说明这些功能活性纳米结构作为纳米复合材料的基础材料的用途,它们通过戊二醛(CA)交联,并通过真空辅助过滤形成宏观薄膜。结果表明,这些PA / CA处理过的薄膜的机械性能可以通过改变合成过程中使用的PA和CA的量,调节水解和聚合的相对量来调整。这些结果首次证明了芳族聚酰胺纳米级纤维可用于形成通用的纳米级结构块,然后可将其交联以制备各种具有可定制性能的纳米结构芳族聚酰胺材料。

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  • 来源
    《Advanced Functional Materials》 |2013年第16期|2072-2080|共9页
  • 作者单位

    Department of Mechanical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

    Department of Chemical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

    Department of Chemical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

    Department of Mechanical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA ,Department of Aerospace Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

    Department of Chemical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA ,Department of Materials Science and Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA ,Department of Biomedical Engineering Program in Macromolecular Science and Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

    Department of Mechanical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA ,Department of Materials Science and Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

    Department of Mechanical Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA ,Department of Biomedical Engineering Program in Macromolecular Science and Engineering University of Michigan Ann Arbor, Ml 48109-2136, USA;

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