论文标题

分支聚醚酰亚胺的粗粒分子动力学建模

Coarse-Grained Molecular Dynamics Modeling of A Branched Polyetherimide

论文作者

Wen, Chengyuan, Odle, Roy, Cheng, Shengfeng

论文摘要

开发了一个粗粒模型,以允许对两个骨架单体[4,4'-双甲醇A苯二氢盐(BPADA)和M-苯基二胺(MPD)]衍生的分支聚酯的大规模分子动力学(MD)模拟,A链终止剂[phthalic Anhydride(PA)和A pa-PARING ANFINIDER(PA)],以及A链终端。 [TRIS [4-(4-氨基苯基)苯基]乙烷(胶带)]。首先是为分支聚苯胺建立的原子模型。一种基于化学信息的原子分组的系统方案,通过直接玻尔兹曼反转的键和角相互作用的推导,以及通过平均力的电位(PMF)通过原子组的气相计算对非键相互作用的参数化,用于构建粗晶模型。已证明,六对几何形状在中心有一个原子基,另一个原子组的六个重复构成了NaCl结构的围绕中心组,可以显着加快PMF计算的速度,并部分捕获PMF的多体方面。此外,我们提出了对PMF的校正项,可以通过使模型捕获聚合物的热膨胀特性,从而使所得的粗粒模型可转移温度。粗粒模型已应用于探索分支聚醚酰亚胺的机械,结构和流变特性。

A coarse-grained model is developed to allow large-scale molecular dynamics (MD) simulations of a branched polyetherimide derived from two backbone monomers [4,4'-bisphenol A dianhydride (BPADA) and m-phenylenediamine (MPD)], a chain terminator [phthalic anhydride (PA)], and a branching agent [tris[4-(4-aminophenoxy)phenyl] ethane (TAPE)]. An atomistic model is first built for the branched polyetherimide. A systematic protocol based on chemistry-informed grouping of atoms, derivation of bond and angle interactions by direct Boltzmann inversion, and parameterization of nonbonded interactions by potential of mean force (PMF) calculations via gas-phase MD simulations of atomic group pairs, is used to construct the coarse-grained model. A six-pair geometry, with one atomic group at the center and six replicates of the other atomic group placed surrounding the central group in a NaCl structure, has been demonstrated to significantly speed up the PMF calculations and partially capture the many-body aspect of the PMFs. Furthermore, we propose a correction term to the PMFs that can make the resulting coarse-grained model transferable temperature-wise, by enabling the model to capture the thermal expansion property of the polymer. The coarse-grained model has been applied to explore the mechanical, structural, and rheological properties of the branched polyetherimide.

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