Xu Peng, Gordon Mark S
Department of Chemistry, Iowa State University , Ames, Iowa 50011, United States.
J Phys Chem A. 2014 Sep 4;118(35):7548-59. doi: 10.1021/jp5015498. Epub 2014 Jun 10.
Anionic water clusters are generally considered to be extremely challenging to model using fragmentation approaches due to the diffuse nature of the excess electron distribution. The local correlation coupled cluster (CC) framework cluster-in-molecule (CIM) approach combined with the completely renormalized CR-CC(2,3) method [abbreviated CIM/CR-CC(2,3)] is shown to be a viable alternative for computing the vertical electron binding energies (VEBE). CIM/CR-CC(2,3) with the threshold parameter ζ set to 0.001, as a trade-off between accuracy and computational cost, demonstrates the reliability of predicting the VEBE, with an average percentage error of ∼15% compared to the full ab initio calculation at the same level of theory. The errors are predominantly from the electron correlation energy. The CIM/CR-CC(2,3) approach provides the ease of a black-box type calculation with few threshold parameters to manipulate. The cluster sizes that can be studied by high-level ab initio methods are significantly increased in comparison with full CC calculations. Therefore, the VEBE computed by the CIM/CR-CC(2,3) method can be used as benchmarks for testing model potential approaches in small-to-intermediate-sized water clusters.
由于多余电子分布的弥散性质,阴离子水团簇通常被认为使用碎片化方法进行建模极具挑战性。局部相关耦合簇(CC)框架下的分子内簇(CIM)方法与完全重整化的CR-CC(2,3)方法(简称为CIM/CR-CC(2,3))相结合,被证明是计算垂直电子结合能(VEBE)的一种可行替代方法。将阈值参数ζ设置为0.001的CIM/CR-CC(2,3),作为准确性和计算成本之间的权衡,证明了预测VEBE的可靠性,与相同理论水平下的全从头算计算相比,平均百分比误差约为15%。误差主要来自电子相关能。CIM/CR-CC(2,3)方法提供了易于操作的黑箱式计算,只需很少的阈值参数。与全CC计算相比,通过高水平从头算方法可研究的团簇尺寸显著增加。因此,通过CIM/CR-CC(2,3)方法计算的VEBE可作为测试中小尺寸水团簇模型势方法的基准。