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Parameterization of a COMPASS force field for single layer blue phosphorene

机译:单层蓝磷烯的罗盘力场的参数化

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摘要

We parameterize an accurate force field for single-layer blue phosphorene based on the framework of COMPASS (a nomenclature of condensed-phase optimized molecular potentials for atomistic simulation studies). During parameterization, the biaxial-strained samples and blue phosphorene nanotubes, as well as the phonon dispersion, are adopted as training sets. The combination of genetic algorithm and the simplex method finally leads to optimized parameters of the COMPASS force field whose accuracy is manifested by the excellent agreement between mechanical and vibrational properties predicted by our best-fitted COMPASS model and the ones by first-principles calculations. Such a high-accurate force field would be a good starting point for studying many physical properties of blue phosphorene based materials.
机译:基于罗盘框架(浓缩相优化分子潜力的术语用于原子模拟研究的缩小分子潜力的命名法,参数化单层蓝磷烯的精确力场。 在参数化期间,采用双轴应变样品和蓝色磷烯纳米管,以及声子分散体作为训练集。 遗传算法和单纯形方法的组合最终导致罗盘力场的优化参数,其准确性通过我们最佳的罗盘模型和通过第一原理计算来预测的机械和振动性能之间的优秀协议。 这种高精度的力场将是研究蓝磷烯基材料的许多物理性质的良好起点。

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