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具有流体动力学记忆的稀溶液中Rouse-Zimm聚合物的长期动力学

Long-time dynamics of Rouse-Zimm polymers in dilute solutions with hydrodynamic memory.

作者信息

Lisy V, Tothova J, Zatovsky A V

机构信息

Institute of Physics, P.J. Safarik University, Jesenna 5, 04154 Kosice, Slovakia.

出版信息

J Chem Phys. 2004 Dec 1;121(21):10699-706. doi: 10.1063/1.1809587.

Abstract

The dynamics of flexible polymers in dilute solutions is studied taking into account the hydrodynamic memory, as a consequence of fluid inertia. As distinct from the Rouse-Zimm (RZ) theory, the Boussinesq friction force acts on the monomers (beads) instead of the Stokes force, and the motion of the solvent is governed by the nonstationary Navier-Stokes equations. The obtained generalized RZ equation is solved approximately using the preaveraging of the Oseen tensor. It is shown that the time correlation functions describing the polymer motion essentially differ from those in the RZ model. The mean-square displacement (MSD) of the polymer coil is at short times approximately t(2) (instead of approximately t). At long times the MSD contains additional (to the Einstein term) contributions, the leading of which is approximately t. The relaxation of the internal normal modes of the polymer differs from the traditional exponential decay. It is displayed in the long-time tails of their correlation functions, the longest lived being approximately t(-3/2) in the Rouse limit and t(-5/2) in the Zimm case, when the hydrodynamic interaction is strong. It is discussed that the found peculiarities, in particular, an effectively slower diffusion of the polymer coil, should be observable in dynamic scattering experiments.

摘要

考虑到由于流体惯性导致的流体动力学记忆效应,对稀溶液中柔性聚合物的动力学进行了研究。与劳斯 - 齐姆(RZ)理论不同,作用在单体(珠子)上的是布辛涅斯克摩擦力而非斯托克斯力,并且溶剂的运动由非定常纳维 - 斯托克斯方程支配。利用奥森张量的预平均近似求解得到的广义RZ方程。结果表明,描述聚合物运动的时间关联函数与RZ模型中的函数有本质区别。聚合物线团的均方位移(MSD)在短时间内近似为t²(而非近似为t)。在长时间时,MSD包含(除爱因斯坦项外)额外的贡献,其中主导项近似为t。聚合物内部正则模式的弛豫不同于传统的指数衰减。这在它们关联函数的长时间尾部表现出来,在流体动力学相互作用较强时,在劳斯极限下最长寿命模式近似为t^(-3/2),在齐姆情况下近似为t^(-5/2)。讨论了所发现的这些特性,特别是聚合物线团有效扩散较慢的情况,应该在动态散射实验中能够观察到。

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