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基于规范和 DLPNO 的复合波函数方法,针对大型和化学多样的训练集进行参数化。2:相关一致基组、核心价电子相关和 F12 替代品。

Canonical and DLPNO-Based Composite Wavefunction Methods Parametrized against Large and Chemically Diverse Training Sets. 2: Correlation-Consistent Basis Sets, Core-Valence Correlation, and F12 Alternatives.

机构信息

Department of Organic Chemistry, Weizmann Institute of Science, 7610001 Rehovot, Israel.

出版信息

J Chem Theory Comput. 2020 Dec 8;16(12):7507-7524. doi: 10.1021/acs.jctc.0c01106. Epub 2020 Nov 17.

Abstract

A hierarchy of wavefunction composite methods (cWFT), based on G4-type cWFT methods available for elements H through Rn, was recently reported by the present authors [ 2020, 16, 4238]. We extend this hierarchy by considering the inner-shell correlation energy in the second-order Møller-Plesset correction and replacing the Weigend-Ahlrichs def2-ZVPP(D) basis sets used with complete basis set extrapolation from augmented correlation-consistent core-valence triple-ζ, aug-cc-pwCVTZ(-PP), and quadruple-ζ, aug-cc-pwCVQZ(-PP), basis sets, thus creating cc-G4-type methods. For the large and chemically diverse GMTKN55 benchmark suite, they represent a substantial further improvement and bring WTMAD2 (weighted mean absolute deviation) down below 1 kcal/mol. Intriguingly, the lion's share of the improvement comes from better capture of valence correlation; the inclusion of core-valence correlation is almost an order of magnitude less important. These robust correlation-consistent cWFT methods approach the CCSD(T) complete basis limit with just one or a few fitted parameters. Particularly, the DLPNO variants such as cc-G4-T-DLPNO are applicable to fairly large molecules at a modest computational cost, as is (for a reduced range of elements) a different variant using MP2-F12/cc-pVTZ-F12 for the MP2 component.

摘要

作者最近报道了一种基于 G4 型 cWFT 方法的波函数组合方法(cWFT)层次结构[2020, 16, 4238]。我们通过考虑二阶 Møller-Plesset 修正中的内壳相关能量,并使用 aug-cc-pwCVTZ(-PP)和 aug-cc-pwCVQZ(-PP)相关一致核价三 ζ、aug-cc-pwCVTZ(-PP)和四 ζ、aug-cc-pwCVQZ(-PP)基组进行完全基组外推,取代了 Weigend-Ahlrichs def2-ZVPP(D)基组,来扩展该层次结构,从而创建了 cc-G4 型方法。对于大型和化学多样性的 GMTKN55 基准套件,它们代表了进一步的显著改进,并将 WTMAD2(加权平均绝对偏差)降低到 1 kcal/mol 以下。有趣的是,改进的大部分来自于更好地捕捉价层相关性;包括核价相关性的重要性几乎降低了一个数量级。这些稳健的相关一致的 cWFT 方法仅使用一个或几个拟合参数就可以接近 CCSD(T)完全基组极限。特别是 DLPNO 变体,如 cc-G4-T-DLPNO,在适度的计算成本下适用于相当大的分子,而对于使用 MP2-F12/cc-pVTZ-F12 作为 MP2 分量的不同变体(对于元素范围较小)也是如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4010/7735707/981b898ffc9f/ct0c01106_0002.jpg

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