Department of Theoretical Chemistry, Chemnitz University of Technology, Straße der Nationen 62, Chemnitz D-09111, Saxony, Germany.
J Comput Chem. 2014 Mar 30;35(8):634-43. doi: 10.1002/jcc.23539. Epub 2014 Jan 30.
In this work, we use MP2 and coupled-cluster with single, double, and perturbative triple excitations [CCSD(T)] as well as their corresponding explicitly correlated (F12) counterparts to compute the interaction energies of water icosamers. The incremental scheme is used to compute benchmark energies at the CCSD(T)/CBS(45) and CCSD(T)(F12*)/cc-pVQZ-F12 level of theory. The four structures, dodecahedron, edge sharing, face sharing, and fused cubes, are part of the WATER27 test set and therefore, highly accurate interaction energies are required. All methods applied in this work lead to new benchmark energies for these four systems. To obtain these values, we carefully analyze the convergence of the interaction energies with respect to the basis set. Furthermore, we investigate the influence of the basis set superposition error and the core-valence correlation. The interaction energies are: dodecahedron -198.6 kcal/mol, edge sharing -209.7 kcal/mol, face sharing -208.0 kcal/mol, and fused cubes -208.0 kcal/mol. For water clusters, we recommend to use the PW6B95 density functional of Truhlar in combination with Grimme's dispersion correction (D3), as the mean absolute error is 0.9 and the root mean-squared deviation is only 1.4 kcal/mol.
在这项工作中,我们使用 MP2 和耦合簇理论,包括单、双和微扰三重激发 [CCSD(T)],以及它们相应的显式相关(F12)对应物,来计算二十面体水的相互作用能。增量方案用于计算在 CCSD(T)/CBS(45)和 CCSD(T)(F12*)/cc-pVQZ-F12 理论水平的基准能量。十二面体、边共享、面共享和融合立方体这四种结构是 WATER27 测试集的一部分,因此需要高度准确的相互作用能。本工作中应用的所有方法都为这四个系统提供了新的基准能量。为了得到这些值,我们仔细分析了相互作用能随基组的收敛情况。此外,我们还研究了基组叠加误差和核价相关的影响。相互作用能分别为:十二面体-198.6 kcal/mol,边共享-209.7 kcal/mol,面共享-208.0 kcal/mol,融合立方体-208.0 kcal/mol。对于水团簇,我们建议使用 Truhlar 的 PW6B95 密度泛函,并结合 Grimme 的弥散修正(D3),因为平均绝对误差为 0.9,均方根偏差仅为 1.4 kcal/mol。