Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.
Langmuir. 2013 Aug 6;29(31):9626-34. doi: 10.1021/la401440w. Epub 2013 Jul 24.
We report noncovalent dispersion of carbon nanotubes (CNTs) in organic liquids with extremely high loading (∼2 mg mL(-1)) using polyvinylferrocene (PVF). In contrast to common dispersants, PVF does not contain any conjugated structures or ionic moieties. PVF is also shown to be effective in controlling nanotube dispersion and reprecipitation because it exhibits redox-switchable affinity for solvents, while maintaining stable physical attachment to CNTs during redox transformation. This switchability provides a novel approach to creating CNT-functionalized surfaces. The material systems described here offer new opportunities for applications of CNTs in nonaqueous media, such as nanotube-polymer composites and organic liquid-based optical limiters, and expand the means of tailoring nanotube dispersion behavior via external stimuli, with potential applications in switching devices. The PVF/CNT hybrid system with enhanced redox response of ferrocene may also find applications in high-performance biosensors and pseudocapacitors.
我们报告了使用聚二茂铁(PVF)在有机液体中非共价分散碳纳米管(CNTs),其负载量极高(~2mg/mL)。与常见的分散剂不同,PVF 不含任何共轭结构或离子部分。由于 PVF 对溶剂表现出氧化还原开关式亲和力,同时在氧化还原转化过程中保持与 CNTs 的稳定物理附着,因此它还被证明可以有效地控制 CNT 的分散和再沉淀。这种开关性为创造 CNT 功能化表面提供了一种新方法。这里描述的材料系统为 CNT 在非水介质中的应用提供了新的机会,例如 CNT-聚合物复合材料和基于有机液体的光限幅器,并通过外部刺激扩展了定制 CNT 分散行为的手段,在开关设备中有潜在的应用。具有增强的二茂铁氧化还原响应的 PVF/CNT 混合系统也可能在高性能生物传感器和赝电容器中找到应用。