Zheng Jingjing, Gour Jeffrey R, Lutz Jesse J, Włoch Marta, Piecuch Piotr, Truhlar Donald G
Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Chem Phys. 2008 Jan 28;128(4):044108. doi: 10.1063/1.2825596.
The CCSD, CCSD(T), and CR-CC(2,3) coupled cluster methods, combined with five triple-zeta basis sets, namely, MG3S, aug-cc-pVTZ, aug-cc-pV(T+d)Z, aug-cc-pCVTZ, and aug-cc-pCV(T+d)Z, are tested against the DBH24 database of diverse reaction barrier heights. The calculations confirm that the inclusion of connected triple excitations is essential to achieving high accuracy for thermochemical kinetics. They show that various noniterative ways of incorporating connected triple excitations in coupled cluster theory, including the CCSD(T) approach, the full CR-CC(2,3) method, and approximate variants of CR-CC(2,3) similar to the triples corrections of the CCSD(2) approaches, are all about equally accurate for describing the effects of connected triply excited clusters in studies of activation barriers. The effect of freezing core electrons on the results of the CCSD, CCSD(T), and CR-CC(2,3) calculations for barrier heights is also examined. It is demonstrated that to include core correlation most reliably, a basis set including functions that correlate the core and that can treat core-valence correlation is required. On the other hand, the frozen-core approximation using valence-optimized basis sets that lead to relatively small computational costs of CCSD(T) and CR-CC(2,3) calculations can achieve almost as high accuracy as the analogous fully correlated calculations.
CCSD、CCSD(T)和CR - CC(2,3)耦合簇方法,与五个三重ζ基组,即MG3S、aug - cc - pVTZ、aug - cc - pV(T + d)Z、aug - cc - pCVTZ和aug - cc - pCV(T + d)Z相结合,针对包含不同反应势垒高度的DBH24数据库进行了测试。计算结果证实,包含连接三重激发对于实现热化学动力学的高精度至关重要。结果表明,在耦合簇理论中纳入连接三重激发的各种非迭代方法,包括CCSD(T)方法、完整的CR - CC(2,3)方法以及类似于CCSD(2)方法的三重校正的CR - CC(2,3)近似变体,在研究活化势垒时描述连接三重激发簇的影响方面都具有大致相同的准确性。还研究了冻结核心电子对CCSD、CCSD(T)和CR - CC(2,3)势垒高度计算结果的影响。结果表明,为了最可靠地包含核心相关,需要一个包含与核心相关且能处理核心 - 价层相关的函数的基组。另一方面,使用价层优化基组的冻结核心近似,这会导致CCSD(T)和CR - CC(2,3)计算的计算成本相对较小,其精度几乎与类似的完全相关计算一样高。