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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Theoretical study of M~+-RG and M~(2+)-RG complexes and transport of M~+ through RG (M = Be and Mg, RG = He-Rn)
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Theoretical study of M~+-RG and M~(2+)-RG complexes and transport of M~+ through RG (M = Be and Mg, RG = He-Rn)

机译:M〜+ -RG和M〜(2 +)-RG络合物以及M〜+通过RG传输的理论研究(M = Be和Mg,RG = He-Rn)

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摘要

We present high level ab initio potential energy curves for the M ~(n+)-RG complexes, where n = 1, 2, RG = rare gas, and M = Be and Mg. Spectroscopic constants have been derived from these potentials, and they generally show very good agreement with the available experimental data. The potentials have also been employed in calculating transport coefficients for M~+ moving through a bath of RG atoms, and the isotopic scaling relationship is examined for Mg~+ in Ne. Trends in binding energies, D_e, and bond lengths, R_e, are discussed and compared to similar ab initio results involving the corresponding complexes of the heavier alkaline earth metal ions. We identify some very unusual behavior, particularly for Be~+-Ne, and offer possible explanations.
机译:我们给出了M〜(n +)-RG配合物的高水平从头算势能曲线,其中n = 1、2,RG =稀有气体,M = Be和Mg。从这些电势中得出了光谱常数,它们通常与可用的实验数据非常吻合。电位也已用于计算M ++通过RG原子浴的传输系数,并研究了Ne中Mg +的同位素比例关系。讨论了结合能D_e和键长R_e的趋势,并将其与涉及从头开始的结果相似,涉及较重的碱土金属离子的相应配合物。我们发现一些非常不寻常的行为,尤其是对于Be〜+ -Ne,并提供可能的解释。

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