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显式相关双杂化密度泛函理论计算的基组收束性。

Basis set convergence of explicitly correlated double-hybrid density functional theory calculations.

机构信息

School of Chemistry, University of Sydney, Sydney, New South Wales 2006, Australia.

出版信息

J Chem Phys. 2011 Oct 14;135(14):144119. doi: 10.1063/1.3647980.

Abstract

The basis set convergence of explicitly correlated double-hybrid density functional theory (DFT) is investigated using the B2GP-PLYP functional. As reference values, we use basis set limit B2GP-PLYP-F12 reaction energies extrapolated from the aug(')-cc-pV(Q+d)Z and aug(')-cc-pV(5+d)Z basis sets. Explicitly correlated double-hybrid DFT calculations converge significantly faster to the basis set limit than conventional calculations done with basis sets saturated up to the same angular momentum (typically, one "gains" one angular momentum in the explicitly correlated calculations). In explicitly correlated F12 calculations the VnZ-F12 basis sets converge faster than the orbital A(')VnZ basis sets. Furthermore, basis set convergence of the MP2-F12 component is apparently faster than that of the underlying Kohn-Sham calculation. Therefore, the most cost-effective approach consists of combining the MP2-F12 correlation energy from a comparatively small basis set such as VDZ-F12 with a DFT energy from a larger basis set such as aug(')-cc-pV(T+d)Z.

摘要

使用 B2GP-PLYP 函数研究了显式相关双杂交密度泛函理论(DFT)的基组收敛性。作为参考值,我们使用基组极限 B2GP-PLYP-F12 反应能从 aug(')-cc-pV(Q+d)Z 和 aug(')-cc-pV(5+d)Z 基组外推得到。显式相关双杂交 DFT 计算比用相同角动量饱和的基组(通常,在显式相关计算中“获得”一个角动量)进行的常规计算收敛速度快得多。在显式相关 F12 计算中,VnZ-F12 基组比轨道 A(')VnZ 基组收敛速度快。此外,MP2-F12 分量的基组收敛速度显然比其基础 Kohn-Sham 计算快。因此,最具成本效益的方法是将相对较小的基组(如 VDZ-F12)的 MP2-F12 相关能与更大基组(如 aug(')-cc-pV(T+d)Z)的 DFT 能量相结合。

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