Milano Giuseppe, Müller-Plathe Florian
School of Engineering and Science, International University Bremen, D-28759, Bremen, Germany.
J Phys Chem B. 2005 Oct 6;109(39):18609-19. doi: 10.1021/jp0523571.
The paper introduces a systematic procedure to coarse-grain atomistic models of the largest family of synthetic polymers into a mesoscopic model that is able to keep detailed information about chain stereosequences. The mesoscopic model consists of sequences of superatoms centered on methylene carbons of two different types according to the kind of diad (m or r) they belong to. The corresponding force-field contains three different bonds, six angle and three nonbonded terms. Recently developed analytical potentials, based on sums of Gaussians for bond and angle terms of the mesoscale force field have been used. For the nonbonded part, numerical potentials optimized by pressure-corrected iterative Boltzmann inversion have been used. As test case we coarse-grained an atomistic all-atom model of atactic polystyrene. The proposed mesoscale model has been successfully tested against structural and dynamical properties for different chain lengths and opens the possibility of relaxing melts of high molecular weight vinyl polymers.
本文介绍了一种系统的方法,可将最大的合成聚合物家族的原子模型粗粒化为一种介观模型,该模型能够保留有关链立体序列的详细信息。介观模型由根据其所属二单元组(m或r)类型以两种不同类型的亚甲基碳为中心的超原子序列组成。相应的力场包含三种不同的键、六种角度和三种非键合项。基于介观力场的键和角度项的高斯和的最近开发的解析势已被使用。对于非键合部分,已使用通过压力校正迭代玻尔兹曼反演优化的数值势。作为测试案例,我们对无规立构聚苯乙烯的全原子模型进行了粗粒化。所提出的介观模型已针对不同链长的结构和动力学性质成功进行了测试,并为松弛高分子量乙烯基聚合物熔体开辟了可能性。