Department of Physics, Faculty of Engineering & Physical Sciences, University of Surrey, Guildford, UK.
Langmuir. 2012 May 29;28(21):8266-74. doi: 10.1021/la301296u. Epub 2012 May 14.
We highlight the significance of capillary pressure in the directed assembly of nanorods in ordered arrays of colloidal particles. Specifically, we discuss mechanisms for the assembly of carbon nanotubes at the interstitial sites between latex polymer particles during composite film formation. Our study points to general design rules to be considered to optimize the ordering of nanostructures within such polymer matrices. In particular, gaining an understanding of the role of capillary forces is critical. Using a combination of electron microscopy and atomic force microscopy, we show that the capillary forces acting on the latex particles during the drying process are sufficient to bend carbon nanotubes. The extent of bending depends on the flexural rigidity of the carbon nanotubes and whether or not they are present as bundled ensembles. We also show that in order to achieve long-range ordering of the nanotubes templated by the polymer matrix, it is necessary for the polymer to be sufficiently mobile to ensure that the nanotubes are frozen into the ordered network when the film is formed and the capillary forces are no longer dominant. In our system, the polymer is plasticized by the addition of surfactant, so that it is sufficiently mobile at room temperature. Interestingly, the carbon nanotubes effectively act as localized pressure sensors, and as such, the study agrees well with previous theoretical predictions calculating the magnitude of capillary forces during latex film formation.
我们强调了在胶体粒子有序排列中纳米棒定向组装过程中毛管压力的重要性。具体而言,我们讨论了在复合膜形成过程中,碳纳米管在乳胶聚合物粒子间的间隙位置组装的机制。我们的研究指出了在这种聚合物基质中优化纳米结构有序性的一般设计规则。特别是,理解毛管力的作用至关重要。通过电子显微镜和原子力显微镜的结合,我们发现,在干燥过程中作用于乳胶粒子的毛管力足以使碳纳米管弯曲。弯曲的程度取决于碳纳米管的弯曲刚性以及它们是否以束状集合体存在。我们还表明,为了实现由聚合物基质模板化的纳米管的长程有序排列,聚合物必须具有足够的流动性,以确保在形成膜时纳米管被冻结到有序网络中,并且毛管力不再占主导地位。在我们的体系中,通过添加表面活性剂使聚合物增塑,因此它在室温下具有足够的流动性。有趣的是,碳纳米管有效地充当局部压力传感器,因此,该研究与先前理论预测的在乳胶膜形成过程中毛管力的大小非常吻合。