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首页> 外文期刊>Journal of Mathematical Chemistry >Percolation of a collection of finite random walks: a model for gas permeation through thin polymeric membranes
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Percolation of a collection of finite random walks: a model for gas permeation through thin polymeric membranes

机译:有限随机游走的渗流:气体透过薄聚合物膜的模型

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Motivated by recent studies of gas permeation through polymer networks, we consider a collection of ordinary random walks of fixed length ℓ, placed randomly on the bonds of a square lattice. These walks model polymers, each with ℓ segments. Using computer simulations, we find the critical concentration of occupied bonds (i.e., the critical occupation probability) for such a network to percolate the system. Though this threshold decreases monotonically with ℓ, the critical “mass” density, defined as the total number of segments divided by total number of bonds in the system, displays a more complex behavior. In particular, for fixed mass densities, the percolation characteristics of the network can change several times, as shorter polymers are linked to form longer ones.
机译:受近期通过聚合物网络进行气体渗透研究的推动,我们考虑了固定长度为ℓ的普通随机游动的集合,这些随机游动随机放置在方格的键上。这些步道模拟聚合物,每个聚合物都有ℓ段。使用计算机模拟,我们发现了此类网络渗透系统的临界结合浓度(即临界占据概率)。尽管此阈值随mono单调降低,但临界“质量”密度(定义为段的总数除以系统中键的总数)显示了更为复杂的行为。特别是对于固定的质量密度,网络连接的渗透特性可能会发生多次变化,因为较短的聚合物会连接形成较长的聚合物。

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