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Aromatic Fragmentation Based on a Ring Overlap Scheme: An Algorithm for Large Polycyclic Aromatic Hydrocarbons Using the Molecules-in-Molecules Fragmentation-Based Method

机译:基于环重叠方案的芳族片段化:使用分子分子碎裂法的大多环芳烃算法

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摘要

We present a novel and systematic fragmentation scheme to treat polycyclic aromatic hydrocarbons (PAHs) built off the molecules-in-molecules composite method. Our algorithm generates a set of biphenyl and naphthalene subsystems overlapping by whole sextet rings, ensuring all calculations are performed on aromatic molecules. Hence, our method is called Aromatic Fragmentation Based on a Ring Overlap Scheme (AroBOROS), and the generated fragments may be combined to form a hierarchy of subsystems to reduce errors for more complex PAHs. Errors are reduced to below chemical accuracy by combining subsystems that reflect the lowest energy structures determined by Clar's rule of aromatic sextets, and this is shown on two diverse test sets of PAHs ranging from 18 to 84 carbon atoms. Additionally, evaluations are performed for larger PAHs, as well as a nanotube fragment, containing up to 132 carbon atoms, and it is shown that good results may be achieved even with fragments representing an appreciably small portion of the full system.
机译:我们提出了一种新颖的和系统的碎片化方案,用于治疗分子分子复合方法的多环芳烃(PAHS)。我们的算法产生一组通过整个SEXTET环重叠的二苯基和萘子系统,确保对芳族分子进行所有计算。因此,我们的方法被称为基于环重叠方案(aroboros)的芳族碎片,并且可以组合生成的片段以形成子系统的层次,以减少更复杂的PAH的错误。通过组合反映通过Clar的芳族六分子规则确定的最低能量结构的子系统来减少到化学精度之下,这在两个不同的PAHS的PAH中显示出来,从18至84个碳原子中显示。另外,对较大的PAHs进行评估,以及含有多达132个碳原子的纳米管片段,并且表明即使具有代表整个系统的明显小部分的片段,也可以实现良好的结果。

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