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Noncovalent functionalization as an alternative to oxidative acid treatment of single wall carbon nanotubes with applications for polymer composites

机译:非共价官能化可替代单壁碳纳米管的氧化酸处理,并用于聚合物复合材料

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摘要

We have created stable dispersions of single wall carbon nanotubes (SWNTs) in water by employing a noncovalent functionalization scheme that allows carboxylic acid moieties to be attached to the SWNT surface by a π-π stacking interaction. Pyrenecarboxylic acid (PCA) is noncovalently attached to the surface of SWNTs and affords highly uniform and stable aqueous dispersions. This method was developed to provide a noncovalent alternative to the commonly used oxidative acid treatment functionalization of carbon nanotubes. This alternative strategy avoids the damage to the carbon nanotube structure inherent to oxidative acid treatments. Carbon nanotubes are commonly functionalized with oxidative acid treatment schemes to create polymer-nanotube composites and improve the adhesion between the polymer and carbon nanotubes. Composites of SWNTs and polycarbonate were prepared and tested to determine the effect of PCA on the adhesion of the SWNTs to the polymer matrix. These tests confirmed that PCA improved the SWNT-polycarbonate adhesion and improved the dispersion of the SWNTs throughout the matrix. This study demonstrates that stable dispersions of SWNTs can be achieved without substantial cutting, introduction of defects, or covalent modification, by employing a simple and effective noncovalent functionalization with PCA.
机译:我们通过采用非共价官能化方案创建了单壁碳纳米管(SWNT)在水中的稳定分散体,该方案允许羧酸部分通过π-π堆积相互作用连接到SWNT表面。 carboxylic羧酸(PCA)非共价结合到SWNT的表面,并提供高度均匀和稳定的水分散体。开发该方法以提供碳纳米管常用氧化酸处理功能化的非共价替代物。这种替代策略避免了对氧化酸处理固有的碳纳米管结构的破坏。碳纳米管通常通过氧化酸处理功能进行功能化,以生成聚合物-纳米管复合材料并改善聚合物与碳纳米管之间的粘合力。制备并测试了SWNT和聚碳酸酯的复合物,以确定PCA对SWNT与聚合物基质的粘附的影响。这些测试证实了PCA改善了SWNT-聚碳酸酯的粘附力,并改善了SWNT在整个基质中的分散性。这项研究表明,通过使用PCA进行简单有效的非共价官能化,可以实现SWNT的稳定分散,而无需大量切割,引入缺陷或进行共价修饰。

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