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水团簇和冰结构的嵌入多体展开能量基准。

Energy benchmarks for water clusters and ice structures from an embedded many-body expansion.

机构信息

London Centre for Nanotechnology, UCL, London WC1H 0AH, United Kingdom.

出版信息

J Chem Phys. 2013 Sep 21;139(11):114101. doi: 10.1063/1.4820906.

DOI:10.1063/1.4820906
PMID:24070273
Abstract

We show how an embedded many-body expansion (EMBE) can be used to calculate accurate ab initio energies of water clusters and ice structures using wavefunction-based methods. We use the EMBE described recently by Bygrave et al. [J. Chem. Phys. 137, 164102 (2012)], in which the terms in the expansion are obtained from calculations on monomers, dimers, etc., acted on by an approximate representation of the embedding field due to all other molecules in the system, this field being a sum of Coulomb and exchange-repulsion fields. Our strategy is to separate the total energy of the system into Hartree-Fock and correlation parts, using the EMBE only for the correlation energy, with the Hartree-Fock energy calculated using standard molecular quantum chemistry for clusters and plane-wave methods for crystals. Our tests on a range of different water clusters up to the 16-mer show that for the second-order Møller-Plesset (MP2) method the EMBE truncated at 2-body level reproduces to better than 0.1 mE(h)/monomer the correlation energy from standard methods. The use of EMBE for computing coupled-cluster energies of clusters is also discussed. For the ice structures Ih, II, and VIII, we find that MP2 energies near the complete basis-set limit reproduce very well the experimental values of the absolute and relative binding energies, but that the use of coupled-cluster methods for many-body correlation (non-additive dispersion) is essential for a full description. Possible future applications of the EMBE approach are suggested.

摘要

我们展示了如何使用嵌入多体展开(EMBE)来计算基于波函数方法的水团簇和冰结构的精确从头算能量。我们使用了 Bygrave 等人最近描述的 EMBE [J. Chem. Phys. 137, 164102 (2012)],其中展开式中的项是通过对单体、二聚体等进行计算得到的,这些单体、二聚体等受到系统中所有其他分子的嵌入场的近似表示的作用,这个场是库仑和交换排斥场的总和。我们的策略是将系统的总能量分为 Hartree-Fock 和相关部分,仅使用 EMBE 计算相关能量,Hartree-Fock 能量使用标准分子量子化学计算簇,平面波方法计算晶体。我们对一系列不同的水团簇进行了测试,最多可达 16 聚体,结果表明对于二阶 Møller-Plesset (MP2) 方法,截断到 2 体水平的 EMBE 可以将标准方法计算的相关能量准确到 0.1 mE(h)/单体。我们还讨论了使用 EMBE 计算团簇的耦合簇能量。对于 Ih、II 和 VIII 冰结构,我们发现 MP2 能量在完全基组极限附近非常好地重现了实验得到的绝对和相对结合能值,但对于多体相关(非加性色散)使用耦合簇方法是完整描述的关键。还提出了 EMBE 方法的可能未来应用。

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