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采用斯莱特型轨道的双杂化密度泛函理论计算

Double hybrid DFT calculations with Slater type orbitals.

作者信息

Förster Arno, Visscher Lucas

机构信息

Theoretical Chemistry, Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

J Comput Chem. 2020 Jul 5;41(18):1660-1684. doi: 10.1002/jcc.26209. Epub 2020 Apr 16.

Abstract

On a comprehensive database with 1,644 datapoints, covering several aspects of main-group as well as of transition metal chemistry, we assess the performance of 60 density functional approximations (DFA), among them 36 double hybrids (DH). All calculations are performed using a Slater type orbital (STO) basis set of triple-ζ (TZ) quality and the highly efficient pair atomic resolution of the identity approach for the exchange- and Coulomb-term of the KS matrix (PARI-K and PARI-J, respectively) and for the evaluation of the MP2 energy correction (PARI-MP2). Employing the quadratic scaling SOS-AO-PARI-MP2 algorithm, DHs based on the spin-opposite-scaled (SOS) MP2 approximation are benchmarked against a database of large molecules. We evaluate the accuracy of STO/PARI calculations for B3LYP as well as for the DH B2GP-PLYP and show that the combined basis set and PARI-error is comparable to the one obtained using the well-known def2-TZVPP Gaussian-type basis set in conjunction with global density fitting. While quadruple-ζ (QZ) calculations are currently not feasible for PARI-MP2 due to numerical issues, we show that, on the TZ level, Jacob's ladder for classifying DFAs is reproduced. However, while the best DHs are more accurate than the best hybrids, the improvements are less pronounced than the ones commonly found on the QZ level. For conformers of organic molecules and noncovalent interactions where very high accuracy is required for qualitatively correct results, DHs provide only small improvements over hybrids, while they still excel in thermochemistry, kinetics, transition metal chemistry and the description of strained organic systems.

摘要

在一个包含1644个数据点的综合数据库上,该数据库涵盖了主族以及过渡金属化学的多个方面,我们评估了60种密度泛函近似(DFA)的性能,其中包括36种双杂化(DH)。所有计算均使用三重ζ(TZ)质量的斯莱特型轨道(STO)基组以及用于KS矩阵交换项和库仑项(分别为PARI-K和PARI-J)以及MP2能量校正评估(PARI-MP2)的高效对原子分辨率恒等方法。采用二次缩放的SOS-AO-PARI-MP2算法,基于自旋相反缩放(SOS)MP2近似的双杂化方法在一个大分子数据库上进行基准测试。我们评估了STO/PARI计算对于B3LYP以及双杂化B2GP-PLYP的准确性,并表明组合基组和PARI误差与使用著名的def2-TZVPP高斯型基组结合全局密度拟合所获得的误差相当。虽然由于数值问题,目前四重ζ(QZ)计算对于PARI-MP2不可行,但我们表明,在TZ水平上,用于分类DFA的雅各布阶梯得以重现。然而,虽然最佳的双杂化方法比最佳的杂化方法更准确,但改进不如在QZ水平上通常发现的那样显著。对于有机分子的构象异构体和非共价相互作用,在定性正确结果需要非常高精度的情况下,双杂化方法相对于杂化方法仅提供了小的改进,而它们在热化学、动力学、过渡金属化学以及应变有机体系的描述方面仍然表现出色。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/039e/7317772/8ed2b83437e0/JCC-41-1660-g001.jpg

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