School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom.
J Chem Phys. 2011 Jul 14;135(2):024312. doi: 10.1063/1.3598472.
We present a systematic investigation of the accuracy of the various theories and basis sets that can be applied to study the interaction of Cl(-) ions with Ar atoms. It is conclusively shown that gaseous ion mobility can distinguish among theoretical ion-neutral interaction potentials. Based on the conclusions, high-level ab initio potential energy curves are obtained for all of the Cl(-)-RG (RG = He-Rn) complexes. Spectroscopic constants have been derived from these potentials and are compared to a range of theoretical and experimental data, to which they generally show good agreement. General trends are discussed in comparison to other halogen-rare gas complexes previously studied. The potentials also have been tested by using them to calculate transport coefficients for Cl(-) moving through a bath of RG atoms.
我们系统地研究了可用于研究 Cl(-) 离子与 Ar 原子相互作用的各种理论和基组的准确性。结论表明,气态离子迁移率可以区分理论离子-中性相互作用势。基于这些结论,我们获得了所有 Cl(-)-RG(RG = He-Rn)复合物的高精度从头算势能曲线。从这些势能中推导出了光谱常数,并将其与一系列理论和实验数据进行了比较,通常它们之间具有很好的一致性。与之前研究过的其他卤族-稀有气体复合物进行了比较,讨论了一些普遍趋势。还通过使用这些势能来计算 Cl(-) 在 RG 原子浴中迁移的输运系数来测试这些势能。