Mussawisade K, Ripoll M, Winkler R G, Gompper G
Institut für Festkörperforschung, Forschungszentrum Jülich, 52425 Jülich, Germany.
J Chem Phys. 2005 Oct 8;123(14):144905. doi: 10.1063/1.2041527.
We study the dynamics of flexible polymer chains in solution by combining multiparticle-collision dynamics (MPCD), a mesoscale simulation method, and molecular-dynamics simulations. Polymers with and without excluded-volume interactions are considered. With an appropriate choice of the collision time step for the MPCD solvent, hydrodynamic interactions build up properly. For the center-of-mass diffusion coefficient, scaling with respect to polymer length is found to hold already for rather short chains. The center-of-mass velocity autocorrelation function displays a long-time tail which decays algebraically as (Dt)(-3/2) as a function of time t, where D is the diffusion coefficient. The analysis of the intramolecular dynamics in terms of Rouse modes yields excellent agreement between simulation data and results of the Zimm model for the mode-number dependence of the mode-amplitude correlation functions.
我们通过结合中尺度模拟方法多粒子碰撞动力学(MPCD)和分子动力学模拟,研究溶液中柔性聚合物链的动力学。考虑了有无排除体积相互作用的聚合物。通过为MPCD溶剂适当选择碰撞时间步长,流体动力学相互作用得以正确建立。对于质心扩散系数,发现对于相当短的链,其与聚合物长度的标度关系已经成立。质心速度自相关函数显示出一个长时间尾部,其随时间t呈代数衰减,形式为(Dt)(-3/2),其中D为扩散系数。根据Rouse模式对分子内动力学进行分析,得到模拟数据与Zimm模型关于模式振幅相关函数的模式数依赖性结果之间的极佳一致性。