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Performance of 3D-space-based atoms-in-molecules methods for electronic delocalization aromaticity indices

机译:基于3D空间的分子内原子方法对电子离域芳香性指数的性能

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Several definitions of an atom in a molecule (AIM) in three-dimensional (3D) space, including both fuzzy and disjoint domains, are used to calculate electron sharing indices (ESI) and related electronic aromaticity measures, namely, Iring and multicenter indices (MCI), for a wide set of cyclic planar aromatic and nonaromatic molecules of different ring size. The results obtained using the recent iterative Hirshfeld scheme are compared with those derived from the classical Hirshfeld method and from Bader's quantum theory of atoms in molecules. For bonded atoms, all methods yield ESI values in very good agreement, especially for C-C interactions. In the case of nonbonded interactions, there are relevant deviations, particularly between fuzzy and QTAIM schemes. These discrepancies directly translate into significant differences in the values and the trends of the aromaticity indices. In particular, the chemically expected trends are more consistently found when using disjoint domains. Careful examination of the underlying effects reveals the different reasons why the aromaticity indices investigated give the expected results for binary divisions of 3D space.
机译:三维(3D)空间中分子(AIM)中原子的几种定义(包括模糊域和不相交域)都用于计算电子共享指数(ESI)和相关的电子芳香性度量,即Iring和多中心指数( MCI),适用于各种不同环尺寸的环状平面芳香族和非芳香族分子。将使用最新的Hirshfeld迭代方案获得的结果与经典Hirshfeld方法和分子中原子的Bader量子理论得出的结果进行比较。对于键合原子,所有方法产生的ESI值都非常一致,尤其是对于C-C相互作用。在非键相互作用的情况下,存在相关的偏差,尤其是在模糊方案和QTAIM方案之间。这些差异直接导致芳香性指数的值和趋势发生显着差异。特别地,当使用不相交域时,更一致地发现化学预期趋势。对潜在影响的仔细检查揭示了调查的芳香指数为3D空间的二元划分提供预期结果的不同原因。

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