Wang Kedong, Li Wei, Li Shuhua
School of Physics and Electronical Engineering, Henan Normal University , Xinxiang, 453007, People's Repubic of China.
J Chem Theory Comput. 2014 Apr 8;10(4):1546-53. doi: 10.1021/ct401060m.
The generalized energy-based fragmentation (GEBF) approach has been implemented for the explicitly correlated F12a of coupled-cluster with the noniterative triples corrections [CCSD(T)-F12a] method for medium- and large-sized systems. By combining the canonical Hartree-Fock (HF) total energies and the GEBF-X correlation energies, the GEBF-X/HF method is illustrated to be more accurate than the origin GEBF-X method, where X could be any electron correlation method, such as second-order Møller-Plesset perturbation theory (MP2), MP2-F12, CCSD(T), and CCSD(T)-F12a. By combining the GEBF-X/HF results at the MP2-F12 and CCSD(T)-F12a levels, we can approximately achieve the CCSD(T) complete basis set (CBS) limit. Our test calculations for 10 low-energy isomers of water 20-mers show that for the relative energies of large water clusters, both the basis set and high-level electron correlation effects should be taken into account, in which the former is even more important. In addition, the GEBF-CCSD(T)/HF method at the CBS limit is used to evaluate 32 levels of density functional theory (DFT) methods. The results show that the DFT methods are difficult to predict the relative energies between the isomers of water 20-mers. The GEBF-CCSD(T)/HF method at the CBS limit is expected to be a benchmark for DFT and other electron correlation methods for medium- and large-sized systems with complex structures, in which both the basis set and electron correlation effects are important.
对于中等大小和大型系统,已将基于广义能量的碎片化(GEBF)方法应用于耦合簇的显式相关F12a并带有非迭代三重校正的方法[CCSD(T)-F12a]。通过结合正则Hartree-Fock(HF)总能量和GEBF-X相关能量,证明了GEBF-X/HF方法比原始的GEBF-X方法更准确,其中X可以是任何电子相关方法,例如二阶Møller-Plesset微扰理论(MP2)、MP2-F12、CCSD(T)和CCSD(T)-F12a。通过结合MP2-F12和CCSD(T)-F12a水平的GEBF-X/HF结果,我们可以近似达到CCSD(T)完全基组(CBS)极限。我们对水二十聚体的10种低能异构体的测试计算表明,对于大型水簇的相对能量,应同时考虑基组和高水平电子相关效应,其中前者更为重要。此外,CBS极限下的GEBF-CCSD(T)/HF方法用于评估32种密度泛函理论(DFT)方法。结果表明,DFT方法难以预测水二十聚体异构体之间的相对能量。CBS极限下的GEBF-CCSD(T)/HF方法有望成为具有复杂结构的中等大小和大型系统的DFT及其他电子相关方法的基准,在这些系统中,基组和电子相关效应都很重要。