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首页> 外文期刊>Journal of chemical theory and computation: JCTC >A First Principles Development of a General Anisotropic Potential for Polycyclic Aromatic Hydrocarbons
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A First Principles Development of a General Anisotropic Potential for Polycyclic Aromatic Hydrocarbons

机译:多环芳烃一般各向异性势的第一性原理发展

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Standard empirical atom-atom potentials are shown to be unable to describe the binding of polycyclic aromatic hydrocarbon (PAH) molecules in the variety of configurations seen in clusters. The main reason for this inadequacy is the lack of anisotropy in these potentials. We have constructed an anisotropic atom-atom intermolecular potential for the benzene molecule from first principles using a symmetry-adapted perturbation theory based on density functional theory (SAPT(DFT)), interaction energy calculations and the Williams-Stone-Misquitta method for obtaining molecular properties in distributed form. Using this potential as a starting point, we have constructed a transferable anisotropic potential to model intermolecular interactions between PAHs. This new potential has been shown to accurately model interaction energies for a variety of dimer configurations for four different PAH molecules, including certain configurations which are poorly modeled with current isotropic potentials. It is intended that this potential will form the basis for further work on the aggregation of PAHs.
机译:结果表明,标准的经验原子-原子电势无法描述在簇中看到的各种构型中的多环芳烃(PAH)分子的结合。这种不足的主要原因是这些电位缺乏各向异性。我们使用基于密度泛函理论(SAPT(DFT))的对称适应扰动理论,相互作用能计算和Williams-Stone-Misquitta方法从第一性原理构建了苯分子的各向异性原子-原子分子间电势分布形式的属性。以这一势能为起点,我们构建了可转移的各向异性势来模拟PAH之间的分子间相互作用。已显示出这种新势能为四种不同PAH分子的各种二聚体构型准确建模相互作用能,包括某些用当前各向同性势建模不佳的构型。预期这种潜力将为进一步开展PAHs聚合工作奠定基础。

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