Jiang Wenhua, Huang Jianhua, Wang Yongmei, Laradji Mohamed
Chemistry Department, The University of Memphis, Memphis, Tennessee 38152-3390, USA.
J Chem Phys. 2007 Jan 28;126(4):044901. doi: 10.1063/1.2428307.
The authors analyzed extensively the dynamics of polymer chains in solutions simulated with dissipative particle dynamics (DPD), with a special focus on the potential influence of a low Schmidt number of a typical DPD fluid on the simulated polymer dynamics. It has been argued that a low Schmidt number in a DPD fluid can lead to underdevelopment of the hydrodynamic interaction in polymer solutions. The authors' analyses reveal that equilibrium polymer dynamics in dilute solution, under typical DPD simulation conditions, obey the Zimm [J. Chem. Phys. 24, 269 (1956)] model very well. With a further reduction in the Schmidt number, a deviation from the Zimm model to the Rouse model is observed. This implies that the hydrodynamic interaction between monomers is reasonably developed under typical conditions of a DPD simulation. Only when the Schmidt number is further reduced, the hydrodynamic interaction within the chains becomes underdeveloped. The screening of the hydrodynamic interaction and the excluded volume interaction as the polymer volume fraction is increased are well reproduced by the DPD simulations. The use of soft interaction between polymer beads and a low Schmidt number do not produce noticeable problems for the simulated dynamics at high concentrations, except for the entanglement effect which is not captured in the simulations.
作者广泛分析了用耗散粒子动力学(DPD)模拟的溶液中聚合物链的动力学,特别关注典型DPD流体的低施密特数对模拟聚合物动力学的潜在影响。有人认为,DPD流体中的低施密特数会导致聚合物溶液中流体动力学相互作用发展不足。作者的分析表明,在典型的DPD模拟条件下,稀溶液中的平衡聚合物动力学非常符合齐姆[《化学物理杂志》24, 269 (1956)]模型。随着施密特数进一步降低,观察到从齐姆模型向劳斯模型的偏差。这意味着在DPD模拟的典型条件下,单体之间的流体动力学相互作用得到了合理发展。只有当施密特数进一步降低时,链内的流体动力学相互作用才会发展不足。随着聚合物体积分数增加,流体动力学相互作用和排除体积相互作用的屏蔽在DPD模拟中得到了很好的再现。除了模拟中未捕捉到的缠结效应外,聚合物珠子之间软相互作用的使用和低施密特数在高浓度下对模拟动力学不会产生明显问题。