首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Influence of Atoms-in-Molecules Methods on Shared-Electron Distribution Indices and Domain-Averaged Fermi Holes
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Influence of Atoms-in-Molecules Methods on Shared-Electron Distribution Indices and Domain-Averaged Fermi Holes

机译:分子内原子方法对共享电子分布指数和畴平均费米孔的影响

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The effect of using different methods to obtain atoms in molecules (AIMs) on the shared-electron distribution indices (SEDIs) and domain-averaged Fermi holes (DAFHs) is examined using a test set of diatomic molecules. Use of Bader’s binary AIM model gives significantly different SEDIs as a function of internuclear distances than do self-consistent Hirshfeld-based AIM models. DAFH eigenvectors remain very similar for all AIM among the different methods. The corresponding eigenvalues are found to differ significantly, although the sums of complementary eigenvalues show only relatively small changes. The choice of a binary division of molecular space into AIM domains is found to lead to extra structure in SEDI curves, but this probably has limited chemical significance.
机译:使用双原子分子测试集检查了使用不同方法获得分子中的原子(AIM)对共享电子分布指数(SEDI)和域平均费米空穴(DAFH)的影响。与基于一致性的基于Hirshfeld的AIM模型相比,使用Bader的二进制AIM模型得出的SEDI随核距的变化而显着不同。在不同方法中,所有AIM的DAFH特征向量仍然非常相似。尽管互补特征值的总和仅显示出相对较小的变化,但是发现相应的特征值存在显着差异。发现将分子空间二元划分为AIM域的选择会导致SEDI曲线中出现额外的结构,但这可能具有有限的化学意义。

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