首页> 外文期刊>Macromolecules >REVERSE MAPPING OF COARSE-GRAINED POLYETHYLENE CHAINS FROM THE SECOND NEAREST NEIGHBOR DIAMOND LATTICE TO AN ATOMISTIC MODEL IN CONTINUOUS SPACE
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REVERSE MAPPING OF COARSE-GRAINED POLYETHYLENE CHAINS FROM THE SECOND NEAREST NEIGHBOR DIAMOND LATTICE TO AN ATOMISTIC MODEL IN CONTINUOUS SPACE

机译:粗粒聚乙烯链从第二近邻菱形晶格的反向映射到连续空间中的原子模型

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摘要

A high coordination lattice was recently introduced for the simulation of coarse-grained rotational isomeric state (RIS) model chains. This second nearest neighbor diamond (2nnd) lattice is formed by connecting every other site on a tetrahedral lattice. Monte Carlo simulations of polyethylene (PE) melts have recently been performed on the 2nnd lattice by incorporating the intramolecular short range interactions from the RIS model and the long range interactions using a potential derived from an averaging procedure of the Mayer function in the expansion for the second virial coefficient. In the present work, the reverse mapping of specific snapshots from the coarse-grained PE melt back to the fully atomistic representation in continuous space is demonstrated. Reverse mapping is, essentially, determining the location of intermediate backbone atoms that are not represented on the 2nnd lattice but exist on the diamond lattice. In certain situations, the new locations of two intermediate atoms may coincide, leading to an unrealistic local conformation with infinite energy. Although these collapse situations are rare in the case of PE, they still present a problem in finding an energetically acceptable snapshot, which can be further subject to energy minimization in continuous space. These local collapse phenomena can be avoided by taking into consideration the geometry of the underlying tetrahedral lattice during coarse-grained simulations. Consequently, specific snapshots from bulk PE simulations are reverse-mapped and their energy is minimized. The cohesive energy densities of these energy-minimized snapshots are very close to the experimental values reported in the literature. [References: 11]
机译:最近引入了一个高配位晶格,用于模拟粗粒旋转异构状态(RIS)模型链。通过连接四面体晶格上的每个其他位置来形成第二近邻菱形(2nnd)晶格。聚乙烯(PE)熔体的蒙特卡罗模拟最近已经通过使用RIS模型的分子内短程相互作用和长程相互作用纳入第二nd晶格进行了模拟,其中使用了Mayer函数平均过程在扩展过程中得到的电势。第二维里系数。在当前的工作中,展示了特定快照从粗粒度PE熔体反向映射到连续空间中的完全原子表示的反向映射。反向映射实质上是确定中间骨架原子的位置,该中间骨架原子在第二晶格上未显示,但在菱形晶格上存在。在某些情况下,两个中间原子的新位置可能会重合,从而导致具有无限能量的不切实际的局部构象。尽管在PE的情况下这些坍塌情况很少见,但它们仍然存在寻找能量上可接受的快照的问题,在连续空间中可能进一步使能量最小化。通过在粗粒度模拟过程中考虑下面的四面体晶格的几何形状,可以避免这些局部坍塌现象。因此,对来自批量PE模拟的特定快照进行了反向映射,并将其能量降至最低。这些能量最小化快照的内聚能密度非常接近文献中报道的实验值。 [参考:11]

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