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AIREBO-M: A reactive model for hydrocarbons at extreme pressures

机译:AIREBO-M:极端压力下碳氢化合物的反应模型

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The Adaptive Intermolecular Reactive Empirical Bond Order potential (AIREBO) for hydrocarbons has been widely used to study dynamic bonding processes under ambient conditions. However, its intermolecular interactions are modeled by a Lennard-Jones (LJ) potential whose unphysically divergent power-law repulsion causes AIREBO to fail when applied to systems at high pressure. We present a modified potential, AIREBO-M, where we have replaced the singular Lennard-Jones potential with a Morse potential. We optimize the new functional form to improve intermolecular steric repulsions, while preserving the ambient thermodynamics of the original potentials as much as possible. The potential is fit to experimental measurements of the layer spacing of graphite up to 14 GPa and first principles calculations of steric interactions between small alkanes. To validate AIREBO-M's accuracy and transferability, we apply it to a graphite bilayer and orthorhombic polyethylene. AIREBO-M gives bilayer compression consistent with quantum calculations, and it accurately reproduces the quasistatic and shock compression of orthorhombic polyethlyene up to at least 40 GPa. (C) 2015 AIP Publishing LLC.
机译:碳氢化合物的自适应分子间反应性经验键序势(AIREBO)已被广泛用于研究环境条件下的动态键合过程。但是,它的分子间相互作用是通过Lennard-Jones(LJ)势来建模的,当将其应用到高压系统时,该势能的非物理发散的幂律排斥会导致AIREBO失效。我们提出了一种经过修改的势能AIREBO-M,其中我们用莫尔斯势能代替了奇异的Lennard-Jones势能。我们优化了新的功能形式,以改善分子间的空间排斥力,同时尽可能保留原始电势的环境热力学。该电势适用于高达14 GPa的石墨层间距的实验测量以及小烷烃之间空间相互作用的第一性原理计算。为了验证AIREBO-M的准确性和可转移性,我们将其应用于石墨双层和正交晶聚乙烯。 AIREBO-M提供与量子计算一致的双层压缩,并且可以准确地再现至少40 GPa的正交晶体聚乙烯的准静态和冲击压缩。 (C)2015 AIP Publishing LLC。

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