Theory of Polymers and Soft Matter and Eindhoven Polymer Laboratories, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
Phys Rev Lett. 2009 Nov 27;103(22):225704. doi: 10.1103/PhysRevLett.103.225704. Epub 2009 Nov 24.
We show that a generalized connectedness percolation theory can be made tractable for a large class of anisotropic particle mixtures that potentially contain an infinite number of components. By applying our methodology to carbon-nanotube composites, we explain the huge variations found in the onset of electrical conduction in terms of a percolation threshold that turns out to be sensitive to polydispersity in particle length and diameter. The theory also allows us to model the influence of the presence of nonconductive species in the mixture, such as is the case for single-walled nanotubes, showing that these raise the percolation threshold proportionally to their abundance.
我们表明,广义连通渗流理论可以应用于一大类潜在含有无限数量组分的各向异性颗粒混合物,并且具有可计算性。通过将我们的方法应用于碳纳米管复合材料,我们根据渗流阈值解释了在电传导开始时发现的巨大变化,该渗流阈值对颗粒长度和直径的多分散性敏感。该理论还使我们能够模拟混合物中存在非导电物质的影响,如单壁纳米管的情况,表明这些物质的存在会使渗流阈值按其丰度成比例地升高。