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Theoretical study of M+ RG2: (M+= Ca, Sr, Ba and Ra; RG= He–Rn)

机译:M + RG2的理论研究:(M + = Ca,Sr,Ba和Ra; RG = He–Rn)

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摘要

Ab initio calculations were employed to investigate M+ RG2 species, where M+ = Ca, Sr, Ba and Ra and RG= He–Rn. Geometries have been optimized, and cuts through the potential energy surfaces containing each global minimum have been calculated at the MP2 level of theory, employing triple-ζ quality basis sets. The interaction energies for these complexes were calculated employing the RCCSD(T) level of theory with quadruple-ζ quality basis sets. Trends in binding energies, De, equilibrium bond lengths, Re, and bond angles are discussed and rationalized by analyzing the electronic density. Mulliken, natural population, and atoms-in-molecules (AIM) population analyses are presented. It is found that some of these complexes involving the heavier Group 2 metals are bent whereas others are linear, deviating from observations for the corresponding Be and Mg metal-containing complexes, which have all previously been found to be bent. The results are discussed in terms of orbital hybridization and the different types of interaction present in these species.
机译:从头算计算用于研究M + RG2种类,其中M + = Ca,Sr,Ba和Ra和RG = He–Rn。几何形状已经过优化,并且在MP2理论水平上使用三重ζ质量基础集计算了包含每个全局最小值的势能面切割。这些复合物的相互作用能是使用RCCSD(T)理论水平和四倍ζ质量基础集计算得出的。通过分析电子密度,讨论并合理化了结合能,De,平衡键长,Re和键角的趋势。提出了Mulliken,自然种群和分子内原子(AIM)种群分析。发现这些涉及较重的第2族金属的配合物中的一些是弯曲的,而其他则是线性的,这与先前已经发现都是弯曲的相应的含Be和Mg金属的配合物的观察结果不同。将根据轨道杂交以及这些物种中存在的不同类型的相互作用来讨论结果。

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