Lane Joseph R, Kjaergaard Henrik G
Department of Chemistry, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.
J Chem Phys. 2009 Jul 21;131(3):034307. doi: 10.1063/1.3159672.
We have optimized the lowest energy structures and calculated interaction energies for the H(2)O-H(2)O, H(2)O-H(2)S, H(2)O-NH(3), and H(2)O-PH(3) dimers with the recently developed explicitly correlated CCSD(T)-F12 methods and the associated VXZ-F12 (where X = D,T,Q) basis sets. For a given cardinal number, we find that the results obtained with the CCSD(T)-F12 methods are much closer to the CCSD(T) complete basis set limit than the conventional CCSD(T) results. In general we find that CCSD(T)-F12 results obtained with the VTZ-F12 basis set are better than the conventional CCSD(T) results obtained with an aug-cc-pV5Z basis set. We also investigate two ways to reduce the effects of basis set superposition error with conventional CCSD(T), namely, the popular counterpoise correction and limiting diffuse basis functions to the heavy atoms only. We find that for a given cardinal number, these selectively augmented correlation consistent basis sets yield results that are closer to the complete basis set limit than the corresponding fully augmented basis sets. Furthermore, we find that the difference between standard and counterpoise corrected interaction energies and intermolecular distances is reduced with the selectively augmented basis sets.
我们使用最近开发的显式相关CCSD(T)-F12方法以及相关的VXZ-F12(其中X = D、T、Q)基组,对H₂O-H₂O、H₂O-H₂S、H₂O-NH₃和H₂O-PH₃二聚体的最低能量结构进行了优化,并计算了相互作用能。对于给定的基数,我们发现使用CCSD(T)-F12方法得到的结果比传统的CCSD(T)结果更接近CCSD(T)完全基组极限。一般来说,我们发现使用VTZ-F12基组得到的CCSD(T)-F12结果优于使用aug-cc-pV5Z基组得到的传统CCSD(T)结果。我们还研究了两种用传统CCSD(T)减少基组叠加误差影响的方法,即常用的平衡校正以及仅将弥散基函数限制在重原子上。我们发现,对于给定的基数,这些选择性增强的相关一致基组产生的结果比相应的完全增强基组更接近完全基组极限。此外,我们发现使用选择性增强基组时,标准相互作用能与平衡校正相互作用能之间的差异以及分子间距离都减小了。