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An atomic charge study of highly ionic diatomic molecular systems

机译:高离子双原子分子系统的原子电荷研究

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Four atomic charge formalisms are compared using highly ionic diatomic molecules, such as LiF, NaF, KF, LiCl, NaCl, KCl, BF, AlF, GaF, BeO, and MgO. All calculations were done at the QCISD/6-311G(2df) level. The only formalism consistent with the characteristics of all these systems is Quantum theory of atoms in molecules (QTAIM). Absolute Mulliken charge values are small. ChelpG charges are not reliable for systems in which the atoms are largely anisotropic. Generalized atomic polar tensor values are contaminated with charge fluxes and atomic dipole fluxes and fail when these contributions are important and do not cancel each other. Finally, the charge-charge flux-dipole flux model was applied to dipole moment derivatives with QTAIM. This analysis shows that charge flux and atomic dipole flux contributions during bond stretching are almost null, except for oxides. There are also evidences that the lone electron pair at Group 13 elements in fluorides becomes less localized as the bond is stretched.
机译:使用高度离子化的双原子分子(例如LiF,NaF,KF,LiCl,NaCl,KCl,BF,AlF,GaF,BeO和MgO)比较了四种原子电荷形式。所有计算均在QCISD / 6-311G(2df)级别完成。与所有这些系统的特征一致的唯一形式主义是分子中的原子量子理论(QTAIM)。 Mulliken的绝对电荷值很小。对于原子主要是各向异性的系统,ChelpG电荷不可靠。广义原子极化张量值被电荷通量和原子偶极子通量污染,并且当这些贡献很重要且彼此不抵消时会失效。最后,利用QTAIM将电荷-电荷通量-偶极子通量模型应用于偶极矩导数。该分析表明,键合拉伸期间的电荷通量和原子偶极子通量贡献几乎为零,除了氧化物。也有证据表明,随着键的延伸,氟化物中第13族元素的孤电子对变得局部化程度降低。

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