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Detailed Molecular Structure of Glassy Poly(phenylene oxide) (PPO) Studied by Molecular Dynamics Simulations

机译:分子动力学模拟研究的玻璃聚(苯基)(PPO)的详细分子结构

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A modeling approach based on sequential stages of pressure compression (NPT) and constant volume (NVT) molecular dynamics (MD) simulations was used effectively for generation of models of glassy samples of poly(phenylene oxide) PPO. Starting from a large periodic simulation box the samples were brought down to the desired density using NPT simulations and also NVT simulations for energy and structural relaxation. The GROMOS 45a3 force-field, with appropriate intermolecular potentials for PPO, was used to model the interatomic interactions. The PPO glassy phase was studied by independently generating 9 samples with different numbers of chains (for the chains of repeat units 15, 25 and 40). Structural analysis included dihedral angle distribution, intra-chain and inter-chain radial distribution functions, radius-of-gyration and torsion angle distributions, free volume and the orientation distributions of intra-chain and interchain phenylene rings. The simulated solubility parameter was in excellent agreement with experimental data for PPO. This computational study of the glassy phase of PPO is an extension of earlier studies by others on single, unperturbed chains of PPO.
机译:基于压力压缩(NPT)和恒体积(NVT)分子动力学(MD)模拟的连续阶段建模方法被有效地用于生成聚苯醚(PPO)玻璃样样品的模型。从一个大的周期模拟箱开始,使用NPT模拟和NVT模拟将样品降低到所需的密度,以获得能量和结构弛豫。格罗莫斯45a3力场具有适当的PPO分子间势,用于模拟原子间的相互作用。通过独立生成9个不同链数的样品(针对重复单元15、25和40的链),研究PPO玻璃相。结构分析包括二面角分布、链内和链间径向分布函数、回转半径和扭转角分布、自由体积以及链内和链间苯环的取向分布。模拟的溶解度参数与PPO的实验数据非常吻合。这项关于PPO玻璃相的计算研究是其他人对PPO单链未受干扰的早期研究的延伸。

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