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首页> 外文期刊>The Journal of Chemical Physics >Computer simulation of polymer networks: Swelling by binary Lennard-Jones mixtures
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Computer simulation of polymer networks: Swelling by binary Lennard-Jones mixtures

机译:聚合物网络的计算机模拟:二元Lennard-Jones混合物的溶胀

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The swelling of regular, tightly meshed model networks is investigated by a molecular-dynamics-Monte Carlo hybrid technique. The chemical equilibrium between two simulation boxes representing the gel phase and a solvent bath, respectively, is obtained by subjecting the Lennard-Jones particles of a binary mixture, serving as explicit solvent, to the particle transfer step of Gibbs ensemble-Monte Carlo. The swelling behavior, especially preferential absorption of a single component, whose dependence on temperature, pressure, and fluid composition is studied, also depends significantly on the size of the central simulation cell. These finite-size effects correlate well with those exhibited by the density of solvent-free (dry) networks. A theoretical expression, whose derivation is based on network elasticity (of dry networks) yields finite-size scaling behavior in good accord with simulation results for both dry networks and gels in contact with solvent baths. This expression can be used to extrapolate the swelling behavior of simulated finite systems to infinite system size. (C) 2005 American Institute of Physics.
机译:通过分子动力学-蒙特卡罗混合技术研究了规则紧密网格模型网络的膨胀。通过分别对用作显溶剂的二元混合物的Lennard-Jones颗粒进行Gibbs ensemble-Monte Carlo的颗粒转移步骤,可以得到分别代表凝胶相和溶剂浴的两个模拟盒之间的化学平衡。研究了取决于温度,压力和流体成分的单个组分的溶胀行为,尤其是其优先吸收性,也很大程度上取决于中央模拟单元的大小。这些有限大小的影响与无溶剂(干)网络的密度所表现出的影响密切相关。理论表达式的推导基于(干网络的)网络弹性得出有限大小的缩放行为,这与干网络和与溶剂浴接触的凝胶的模拟结果均十分吻合。该表达式可用于将模拟有限系统的膨胀行为外推到无限系统大小。 (C)2005美国物理研究所。

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