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Dissecting molecular descriptors into atomic contributions in density functional reactivity theory

机译:在密度泛函反应理论中将分子描述符分解为原子贡献

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Density functional reactivity theory (DFRT) employs the electron density of a molecule and its related quantities such as gradient and Laplacian to describe its structure and reactivity properties. Proper descriptions at both molecular (global) and atomic (local) levels are equally important and illuminating. In this work, we make use of Bader’s zero-flux partition scheme and consider atomic contributions for a few global reactivity descriptors in DFRT, including the density-based quantification of steric effect and related indices. Earlier, we proved that these quantities are intrinsically correlated for atomic and molecular systems [S. B. Liu, J. Chem. Phys. 126, 191107 (2007); ibid. 126, 244103 (2007)]. In this work, a new basin-based integration algorithm has been implemented, whose reliability and effectiveness have been extensively examined. We also investigated a list of simple hydrocarbon systems and different scenarios of bonding processes, including stretching, bending, and rotating. Interesting changing patterns for the atomic and molecular values of these quantities have been revealed for different systems. This work not only confirms the strong correlation between these global reactivity descriptors for molecular systems, as theoretically proven earlier by us, it also provides new and unexpected changing patterns for their atomic values, which can be employed to understand the origin and nature of chemical phenomena.
机译:密度泛函反应性理论(DFRT)利用分子的电子密度及其相关量(例如梯度和Laplacian)来描述其结构和反应性。在分子(整体)和原子(局部)水平上的正确描述同样重要且具有启发性。在这项工作中,我们利用Bader的零通量分配方案,并考虑了DFRT中一些全局反应性描述符的原子贡献,包括基于密度的空间效应和相关指标的量化。之前,我们证明了这些数量与原子和分子系统具有内在的关联性[S. B.Liu,J.Chem。物理126,191107(2007);同上126,244103(2007)]。在这项工作中,已实现了一种新的基于盆地的集成算法,其可靠性和有效性已得到广泛检验。我们还研究了简单的碳氢化合物系统以及粘合过程(包括拉伸,弯曲和旋转)的不同方案的列表。对于不同的系统,已经揭示了这些数量的原子和分子值的有趣变化模式。这项工作不仅确认了分子系统的这些全局反应性描述子之间的强相关性,正如我们早先在理论上所证明的,而且还为它们的原子值提供了新的和出乎意料的变化模式,可用于理解化学现象的起源和性质。 。

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