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聚合物在溶剂中的平衡构象动力学

Equilibrium conformational dynamics of a polymer in a solvent.

作者信息

Polson James M, Gallant John P

机构信息

Department of Physics, University of Prince Edward Island, 550 University Avenue, Charlottetown, Prince Edward Island, C1A 4P3, Canada.

出版信息

J Chem Phys. 2006 May 14;124(18):184905. doi: 10.1063/1.2194903.

Abstract

Molecular dynamics simulations were used to study the conformational dynamics of a bead-spring model polymer in an explicit solvent under good solvent conditions. The dynamics of the polymer chain were investigated using an analysis of the time autocorrelation functions of the Rouse coordinates of the polymer chain. We have investigated the variation of the correlation functions with polymer chain length N, solvent density rho, and system size. The measured initial decay rates gamma(p) of the correlation functions were compared with the predictions from a theory of polymer dynamics which uses the Oseen tensor to describe hydrodynamic interactions between monomers. Over the range of chain lengths considered (N = 30-60 monomers), the predicted scaling of gamma(p) proportional to N(-3nu) was observed at high rho, where nu is the polymer scaling exponent. The predicted gamma(p) are generally higher than the measured values. This discrepancy increases with decreasing rho, as a result in the breakdown in the conditions required for the Oseen approximation. The agreement between theory and simulation at high rho improves considerably if the theoretical expression for gamma(p) is modified to avoid sum-to-integral approximations, and if the values of (R(p)2), which are used in the theory, are taken directly from the simulation rather than being calculated using approximate scaling relations. The observed finite-size scaling of gamma(p) is not quantitatively consistent with the theoretical predictions.

摘要

分子动力学模拟用于研究在良溶剂条件下,珠子弹簧模型聚合物在显式溶剂中的构象动力学。通过分析聚合物链的劳斯坐标的时间自相关函数,研究了聚合物链的动力学。我们研究了相关函数随聚合物链长度N、溶剂密度ρ和系统尺寸的变化。将测量得到的相关函数的初始衰减率γ(p)与聚合物动力学理论的预测结果进行了比较,该理论使用奥森张量来描述单体之间的流体动力学相互作用。在所考虑的链长范围内(N = 30 - 60个单体),在高ρ时观察到γ(p)与N^(-3ν)成比例的预测标度关系,其中ν是聚合物标度指数。预测的γ(p)通常高于测量值。随着ρ的减小,这种差异增大,这是由于奥森近似所需条件的破坏所致。如果修改γ(p)的理论表达式以避免求和到积分的近似,并且如果理论中使用的(R(p)^2)值直接取自模拟而非使用近似标度关系计算,则在高ρ时理论与模拟之间的一致性会有显著改善。观察到的γ(p)的有限尺寸标度与理论预测在定量上不一致。

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