Viswanathan Gunaranjan, Chakrapani Nirupama, Yang Hoichang, Wei Bingqing, Chung Hyunsoo, Cho Kilwon, Ryu Chang Y, Ajayan Pulickel M
Department of Chemical Engineering, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.
J Am Chem Soc. 2003 Aug 6;125(31):9258-9. doi: 10.1021/ja0354418.
An in situ composite synthesis technique has been developed by grafting polystyrene chains onto single-wall carbon nanotubes (SWNTs) via a single-step debundling/polymerization scheme. The method, based on established anionic polymerization techniques, eliminates the need for nanotube pretreatment prior to functionalization and allows attachment of polymer molecules to pristine tubes without altering their original structure. The composites obtained contain well-dispersed SWNTs with good nanotube-matrix interaction. The scheme is quite general in nature and can be applied to different polymer systems. The simplicity and scalability of the process can lead to the realization of superior nanotube-based polymer composites for applications as advanced multifunctional structural materials.
通过一步解束/聚合方案将聚苯乙烯链接枝到单壁碳纳米管(SWNTs)上,开发了一种原位复合合成技术。该方法基于成熟的阴离子聚合技术,无需在功能化之前对纳米管进行预处理,并且能够在不改变原始结构的情况下将聚合物分子连接到原始管上。所获得的复合材料包含分散良好的单壁碳纳米管,且纳米管与基体之间具有良好的相互作用。该方案本质上非常通用,可应用于不同的聚合物体系。该工艺的简单性和可扩展性能够实现用于先进多功能结构材料应用的优质纳米管基聚合物复合材料。