Van Dornshuld Eric, Tschumper Gregory S
Department of Chemistry and Biochemistry, University of Mississippi, MS 38677-1848.
J Comput Chem. 2014 Mar 5;35(6):479-87. doi: 10.1002/jcc.23522. Epub 2014 Jan 9.
This work characterizes eight stationary points of the P2 dimer and six stationary points of the PCCP dimer, including a newly identified minimum on both potential energy surfaces. Full geometry optimizations and corresponding harmonic vibrational frequencies were computed with the second-order Møller-Plesset (MP2) electronic structure method and six different basis sets: aug-cc-pVXZ, aug-cc-pV(X+d)Z, and aug-cc-pCVXZ where X = T, Q. A new L-shaped structure with C2 symmetry is the only minimum for the P2 dimer at the MP2 level of theory with these basis sets. The previously reported parallel-slipped structure with C2 h symmetry and a newly identified cross configuration with D2 symmetry are the only minima for the PCCP dimer. Single point energies were also computed using the canonical MP2 and CCSD(T) methods as well as the explicitly correlated MP2-F12 and CCSD(T)-F12 methods and the aug-cc-pVXZ (X = D, T, Q, 5) basis sets. The energetics obtained with the explicitly correlated methods were very similar to the canonical results for the larger basis sets. Extrapolations were performed to estimate the complete basis set (CBS) limit MP2 and CCSD(T) binding energies. MP2 and MP2-F12 significantly overbind the P2 and PCCP dimers relative to the CCSD(T) and CCSD(T)-F12 binding energies by as much as 1.5 kcal mol(-1) for the former and 5.0 kcal mol(-1) for the latter at the CBS limit. The dominant attractive component of the interaction energy for each dimer configuration was dispersion according to several symmetry-adapted perturbation theory analyses.
这项工作表征了P2二聚体的八个驻点和PCCP二聚体的六个驻点,包括在两个势能面上新发现的一个最小值。使用二阶Møller-Plesset(MP2)电子结构方法和六个不同的基组:aug-cc-pVXZ、aug-cc-pV(X+d)Z以及X = T、Q时的aug-cc-pCVXZ,计算了完全几何优化和相应的谐振频率。对于P2二聚体,在这些基组的MP2理论水平下,具有C2对称性的新L形结构是唯一的最小值。先前报道的具有C2h对称性的平行滑移结构和新发现的具有D2对称性的交叉构型是PCCP二聚体仅有的最小值。还使用正则MP2和CCSD(T)方法以及显式相关的MP2-F12和CCSD(T)-F12方法以及aug-cc-pVXZ(X = D、T、Q、5)基组计算了单点能量。用显式相关方法获得的能量学结果与较大基组的正则结果非常相似。进行了外推以估计完全基组(CBS)极限的MP2和CCSD(T)结合能。在CBS极限下,相对于CCSD(T)和CCSD(T)-F12结合能,MP2和MP2-F12使P2和PCCP二聚体的结合能显著高估,前者高达1.5 kcal mol(-1),后者高达5.0 kcal mol(-1)。根据几种对称适配微扰理论分析,每种二聚体构型相互作用能的主要吸引成分是色散。