材料科学
碳纳米管
渗透(认知心理学)
渗流阈值
热导率
复合材料
导电体
纵横比(航空)
纳米管
电阻率和电导率
电导率
渗流理论
蒙特卡罗方法
物理
神经科学
统计
生物
量子力学
数学
作者
M. Foygel,Robin D. Morris,D. Anez,Samuel B. French,V. L. Sobolev
出处
期刊:Physical Review B
[American Physical Society]
日期:2005-03-04
卷期号:71 (10)
被引量:641
标识
DOI:10.1103/physrevb.71.104201
摘要
Monte Carlo simulations have been performed, aimed at finding a critical fractional volume (CFV) associated with the onset of percolation for randomly oriented nanotubes (or, indeed, any conductive particles with large aspect ratios) that are randomly dispersed in a low thermo- or electroconductive medium. The nanotubes were treated as capped interpenetrating conductive cylinders (``sticks'') with high (up to 2000) aspect ratio $a$. It has been found that for these aspect ratios the CFV is inversely proportional to $a$ resulting in surprisingly low filler volume loadings, of the order of 0.01%, required to achieve percolation in such systems. By studying fluctuations of the CFV and the density of the percolation clusters, various critical indices of the percolation theory have been calculated including the critical index of conductivity, $t$. For three-dimensional systems it has been found that $t$ decreases substantially with an increase in the aspect ratio. The calculated thermal and electrical conductivity of the nanotube suspensions and composites as functions of the nanotube loading is in good agreement with recent experimental data.
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