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用于模拟溶液中聚合物连接倍半硅氧烷自组装的粗粒度力场。

Coarse-grained force field for simulating polymer-tethered silsesquioxane self-assembly in solution.

作者信息

Chan Elaine R, Striolo Alberto, McCabe Clare, Cummings Peter T, Glotzer Sharon C

机构信息

Department of Chemical Engineering, University of Michigan, Ann Arbor, Michigan 48109-2136, USA.

出版信息

J Chem Phys. 2007 Sep 21;127(11):114102. doi: 10.1063/1.2753493.

Abstract

A coarse-grained model has been developed for simulating the self-assembly of nonyl-tethered polyhedral oligomeric silsesquioxane (POSS) nanoparticles in solution. A mapping scheme for groups of atoms in the atomistic molecule onto beads in the coarse-grained model was established. The coarse-grained force field consists of solvent-mediated effective interaction potentials that were derived via a structural-based coarse-graining numerical iteration scheme. The force field was obtained from initial guesses that were refined through two different iteration algorithms. The coarse-graining scheme was validated by comparing the aggregation of POSS molecules observed in simulations of the coarse-grained model to that observed in all-atom simulations containing explicit solvent. At 300 K the effective coarse-grained potentials obtained from different initial guesses are comparable to each other. At 400 K the differences between the force fields obtained from different initial guesses, although small, are noticeable. The use of a different iteration algorithm employing identical initial guesses resulted in the same overall effective potentials for bare cube corner bead sites. In both the coarse-grained and all-atom simulations, small aggregates of POSS molecules were observed with similar local packings of the silsesquioxane cages and tether conformations. The coarse-grained model afforded a savings in computing time of roughly two orders of magnitude. Further comparisons were made between the coarse-grained monotethered POSS model developed here and a minimal model developed in earlier work. The results suggest that the interactions between POSS cages are long ranged and are captured by the coarse-grained model developed here. The minimal model is suitable for capturing the local intermolecular packing of POSS cubes at short separation distances.

摘要

已开发出一种粗粒度模型,用于模拟溶液中壬基连接的多面体低聚倍半硅氧烷(POSS)纳米颗粒的自组装。建立了一种将原子分子中的原子基团映射到粗粒度模型中的珠子上的映射方案。粗粒度力场由通过基于结构的粗粒度数值迭代方案导出的溶剂介导的有效相互作用势组成。力场是从初始猜测中获得的,这些猜测通过两种不同的迭代算法进行了优化。通过将粗粒度模型模拟中观察到的POSS分子聚集与包含显式溶剂的全原子模拟中观察到的聚集进行比较,验证了粗粒度方案。在300 K时,从不同初始猜测获得的有效粗粒度势彼此相当。在400 K时,从不同初始猜测获得的力场之间的差异虽然很小,但很明显。使用相同初始猜测的不同迭代算法导致裸立方角珠子位点的总体有效势相同。在粗粒度和全原子模拟中,都观察到了POSS分子的小聚集体,其倍半硅氧烷笼的局部堆积和连接构象相似。粗粒度模型在计算时间上节省了大约两个数量级。在此开发的粗粒度单连接POSS模型与早期工作中开发的最小模型之间进行了进一步比较。结果表明,POSS笼之间的相互作用是长程的,并且在此开发的粗粒度模型中得到了体现。最小模型适用于在短分离距离下捕捉POSS立方体的局部分子间堆积。

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