论文标题

通过密度校正的DFT,哪些类型的化学问题受益?使用广泛且化学多样的测试套件的探测器

What types of chemical problems benefit from density-corrected DFT? A probe using an extensive and chemically diverse test suite

论文作者

Santra, Golokesh, Martin, Jan M. L.

论文摘要

For the large and chemically diverse GMTKN55 benchmark suite, we have studied the performance of density-corrected density functional theory (HF-DFT), compared to self-consistent DFT, for several pure and hybrid GGA and meta-GGA exchange-correlation (XC) functionals (PBE, BLYP, TPSS, SCAN) as a function of the percentage of HF exchange in the hybrid. D4经验分散校正均已添加。对于由动态相关性(尤其是非共价相互作用子集)主导的子集,HF-DFT非常有益,尤其是在HF交换率低的情况下。对于具有显着静态相关性的子集(即,在Hartree-fock决定因素不是良好的零级波函数)中,HF-DFT可能弊大于利。虽然这四个XC功能的自洽系列显示了Optiama在37.5%(即3/8)的接近或接近37.5%(即3/8),这与Grimme对PBE38功能的提议一致-HF-BNLYP-D4,HF-PBEN-D4,HF-PBEN-D4和HF-TPSSN-D4均展示了所有展示最小值25%(I.E.E.E.E.E.E.,1/4)。有趣的是,对于HF-SCANN-D4,最小值接近10%,但是GMTKN55的加权平均绝对误差(WTMAD2)仅低于HF-SCAN-D4的加权平均误差(WTMAD2)(即HF-SCAN-D4(即HF后HF步骤是纯Meta-GGA)。后者成为一个有吸引力的选择,仅比纯Hartree-fock稍高,并且没有分散校正中三个以外的可调节参数。此外,其WTMAD2仅被高度经验的M06-2X和组合优化的经验范围分离的混合动力车WB97X-V和WB97M-V所超越。

For the large and chemically diverse GMTKN55 benchmark suite, we have studied the performance of density-corrected density functional theory (HF-DFT), compared to self-consistent DFT, for several pure and hybrid GGA and meta-GGA exchange-correlation (XC) functionals (PBE, BLYP, TPSS, SCAN) as a function of the percentage of HF exchange in the hybrid. The D4 empirical dispersion correction has been added throughout. For subsets dominated by dynamical correlation -- particularly noncovalent interaction subsets -- HF-DFT is highly beneficial, particularly at low HF exchange percentages. For subsets with significant static correlation (i.e., where a Hartree-Fock determinant is not a good zero-order wavefunction), HF-DFT may do more harm than good. While the self-consistent series show optima at or near 37.5% (i.e., 3/8) for all four XC functionals -- consistent with Grimme's proposal of the PBE38 functional -- HF-BnLYP-D4, HF-PBEn-D4, and HF-TPSSn-D4 all exhibit minima nearer 25% (i.e., 1/4). Intriguingly, for HF-SCANn-D4, the minimum is near 10%, but the weighted mean absolute error (WTMAD2) for GMTKN55 is only barely lower than that of HF-SCAN-D4 (i.e., where the post-HF step is a pure meta-GGA). The latter becomes an attractive option, only slightly more costly than pure Hartree-Fock, and devoid of adjustable parameters other than the three in the dispersion correction. Moreover, its WTMAD2 is only surpassed by the highly empirical M06-2X and by the combinatorically optimized empirical range-separated hybrids wB97X-V and wB97M-V.

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