论文标题

具有VV10的密度功能的分析谐波振动频率:理论,有效实施和基准评估

Analytical harmonic vibrational frequencies with VV10-containing density functionals: Theory, efficient implementation, and benchmark assessments

论文作者

Liang, Jiashu, Feng, Xintian, Head-Gordon, Martin

论文摘要

VV10是一种强大的非局部密度函数,用于远程相关性,用于在许多现代密度函数中包括分散效应,例如元广播梯度近似(MGGA),B97M-V,杂种GGA,Hybrid GGA,ωB97X-V和Hybrid MGGA,Hybrid MGGA,HYBRID MGGA,XB977M-V。尽管VV10的能量和分析梯度已经广泛使用,但本研究报告了VV10能量的分析第二个衍生物的第一个衍生和有效实现。 VV10对分析频率贡献的额外计算成本在除了推荐的网格尺寸的最小基集外显示出很小的。这项研究还报告了使用分析第二个导数代码预测谐波频率的含VV10功能的评估。 VV10对模拟谐波频率的贡献对于小分子来说很小,但对于弱相互作用很重要的系统(例如水簇)很重要。在后一种情况下,B97M-V,ωB97M-V和ωB97X-V的性能很好。研究了频率相对于网格大小和原子轨道基集大小的收敛性,并报告了建议。最后,为一些最近开发的功能(包括R2SCAN,B97M-V,ωB97X-V,M06-SX,M06-SX和ωB97M-v)提供了允许比较谐波频率与实验基本频率进行比较并预测零点振动能的比较因子。

VV10 is a powerful nonlocal density functional for long-range correlation that is used to include dispersion effects in many modern density functionals such as the meta-generalized gradient approximation (mGGA), B97M-V, the hybrid GGA, ωB97X-V and the hybrid mGGA, ωB97M-V. While energies and analytical gradients for VV10 are already widely available, this study reports the first derivation and efficient implementation of the analytical second derivatives of the VV10 energy. The additional compute cost of the VV10 contributions to analytical frequencies is shown to be small in all but the smallest basis sets for recommended grid sizes. This study also reports the assessment of VV10-containing functionals for predicting harmonic frequencies using the analytical second derivative code. The contribution of VV10 to simulating harmonic frequencies is shown to be small for small molecules but important for systems where weak interactions are important, such as water clusters. In the latter cases, B97M-V, ωB97M-V, and ωB97X-V perform very well. The convergence of frequencies with respect to grid size and atomic orbital basis set size is studied and recommendations reported. Finally, scaling factors to allow comparison of scaled harmonic frequencies with experimental fundamental frequencies and to predict zero-point vibrational energy are presented for some recently developed functionals (including r2SCAN, B97M-V, ωB97X-V, M06-SX, and ωB97M-V).

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