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芳纶纳米纤维分散体:一种新型纳米尺度构建块。

Dispersions of aramid nanofibers: a new nanoscale building block.

机构信息

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

出版信息

ACS Nano. 2011 Sep 27;5(9):6945-54. doi: 10.1021/nn2014003. Epub 2011 Aug 12.

Abstract

Stable dispersions of nanofibers are virtually unknown for synthetic polymers. They can complement analogous dispersions of inorganic components, such as nanoparticles, nanowires, nanosheets, etc. as a fundamental component of a toolset for design of nanostructures and metamaterials via numerous solvent-based processing methods. As such, strong flexible polymeric nanofibers are very desirable for the effective utilization within composites of nanoscale inorganic components such as nanowires, carbon nanotubes, graphene, and others. Here stable dispersions of uniform high-aspect-ratio aramid nanofibers (ANFs) with diameters between 3 and 30 nm and up to 10 μm in length were successfully obtained. Unlike the traditional approaches based on polymerization of monomers, they are made by controlled dissolution of standard macroscale form of the aramid polymer, that is, well-known Kevlar threads, and revealed distinct morphological features similar to carbon nanotubes. ANFs are successfully processed into films using layer-by-layer (LBL) assembly as one of the potential methods of preparation of composites from ANFs. The resultant films are transparent and highly temperature resilient. They also display enhanced mechanical characteristics making ANF films highly desirable as protective coatings, ultrastrong membranes, as well as building blocks of other high performance materials in place of or in combination with carbon nanotubes.

摘要

对于合成聚合物来说,稳定的纳米纤维分散体实际上是未知的。它们可以补充类似的无机成分分散体,如纳米粒子、纳米线、纳米片等,作为通过多种基于溶剂的处理方法设计纳米结构和超材料的工具集的基本组成部分。因此,强韧的柔性聚合物纳米纤维非常适合在纳米级无机成分(如纳米线、碳纳米管、石墨烯等)复合材料中有效利用。在这里,成功获得了直径在 3nm 到 30nm 之间、长度可达 10μm 的均匀高纵横比芳纶纳米纤维 (ANF) 的稳定分散体。与基于单体聚合的传统方法不同,它们是通过控制芳纶聚合物的标准宏观形式(即众所周知的 Kevlar 纤维)的溶解来制备的,并且显示出与碳纳米管相似的独特形态特征。通过层层 (LBL) 组装将 ANF 成功加工成薄膜,这是从 ANF 制备复合材料的潜在方法之一。所得薄膜是透明的,并且具有很高的温度弹性。它们还显示出增强的机械特性,使得 ANF 薄膜非常适合用作防护涂层、超强膜以及替代或与碳纳米管结合的其他高性能材料的构建块。

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