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用于聚合物纳米复合材料的功能化石墨烯片材

Functionalized graphene sheets for polymer nanocomposites.

作者信息

Ramanathan T, Abdala A A, Stankovich S, Dikin D A, Herrera-Alonso M, Piner R D, Adamson D H, Schniepp H C, Chen X, Ruoff R S, Nguyen S T, Aksay I A, Prud'Homme R K, Brinson L C

机构信息

Department of Mechanical Engineering, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

Nat Nanotechnol. 2008 Jun;3(6):327-31. doi: 10.1038/nnano.2008.96. Epub 2008 May 11.

Abstract

Polymer-based composites were heralded in the 1960s as a new paradigm for materials. By dispersing strong, highly stiff fibres in a polymer matrix, high-performance lightweight composites could be developed and tailored to individual applications. Today we stand at a similar threshold in the realm of polymer nanocomposites with the promise of strong, durable, multifunctional materials with low nanofiller content. However, the cost of nanoparticles, their availability and the challenges that remain to achieve good dispersion pose significant obstacles to these goals. Here, we report the creation of polymer nanocomposites with functionalized graphene sheets, which overcome these obstacles and provide superb polymer-particle interactions. An unprecedented shift in glass transition temperature of over 40 degrees C is obtained for poly(acrylonitrile) at 1 wt% functionalized graphene sheet, and with only 0.05 wt% functionalized graphene sheet in poly(methyl methacrylate) there is an improvement of nearly 30 degrees C. Modulus, ultimate strength and thermal stability follow a similar trend, with values for functionalized graphene sheet- poly(methyl methacrylate) rivaling those for single-walled carbon nanotube-poly(methyl methacrylate) composites.

摘要

基于聚合物的复合材料在20世纪60年代被誉为材料领域的一种新范式。通过在聚合物基体中分散高强度、高刚性的纤维,可以开发出高性能的轻质复合材料,并针对个别应用进行定制。如今,我们在聚合物纳米复合材料领域也处于类似的起点,有望实现具有低纳米填料含量的高强度、耐用、多功能材料。然而,纳米颗粒的成本、其可得性以及实现良好分散仍面临的挑战,对实现这些目标构成了重大障碍。在此,我们报告了用功能化石墨烯片材制备聚合物纳米复合材料,其克服了这些障碍,并提供了优异的聚合物 - 颗粒相互作用。在1 wt%功能化石墨烯片材的情况下,聚(丙烯腈)的玻璃化转变温度出现了超过40摄氏度的前所未有的变化,而在聚(甲基丙烯酸甲酯)中仅含有0.05 wt%功能化石墨烯片材时,玻璃化转变温度提高了近30摄氏度。模量、极限强度和热稳定性呈现类似趋势,功能化石墨烯片材 - 聚(甲基丙烯酸甲酯)的性能与单壁碳纳米管 - 聚(甲基丙烯酸甲酯)复合材料相当。

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