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一种改进的长程校正混合交换相关泛函,包括短程高斯衰减(LCgau-BOP)。

An improved long-range corrected hybrid exchange-correlation functional including a short-range Gaussian attenuation (LCgau-BOP).

作者信息

Song Jong-Won, Tokura Seiken, Sato Takeshi, Watson Mark A, Hirao Kimihiko

机构信息

Department of Applied Chemistry, School of Engineering, The University of Tokyo, Tokyo 113-8656, Japan.

出版信息

J Chem Phys. 2007 Oct 21;127(15):154109. doi: 10.1063/1.2790017.

Abstract

A new hybrid exchange-correlation functional is presented based on the long-range correction (LC) scheme [H. Iikura et al., J. Chem. Phys. 115, 3540 (2001); Tawada et al., J. Chem. Phys. 120, 8425 (2004)], named LCgau-BOP. The key feature is the use of a two-parameter Gaussian correction to the Coulomb attenuation, which allows a more flexible description of exact exchange at short-range interelectronic separations. The new partitioning preserves 100% exact exchange in the long range, which is known to be important for the success of the LC scheme, with an asymptotic attenuation described by a standard error function with a parameter of 0.42. The LCgau partitioning was optimized for the reproduction of atomization energies over the G2 set and reaction barrier heights over Database/3, and produced results which are superior to B3LYP, CAM-BLYP, and the best LC functionals we are aware of. The results highlight the importance of including a substantial portion of exact exchange in the short range. Using the same parameters, the new functional was tested for the reproduction of geometries, as well as valence, Rydberg and charge-transfer excitations which are known challenges for conventional density functional theory. Our conclusion is that LCgau-BOP can provide a consistently more accurate description of thermochemistries, chemical reactions, and excitation energies than other existing long-range corrected functionals.

摘要

基于长程校正(LC)方案[H. Iikura等人,《化学物理杂志》115, 3540 (2001); Tawada等人,《化学物理杂志》120, 8425 (2004)],提出了一种新的杂化交换关联泛函,命名为LCgau - BOP。其关键特性是对库仑衰减采用双参数高斯校正,这使得在短程电子间距下能更灵活地描述精确交换。新的划分在长程保持100%的精确交换,已知这对LC方案的成功很重要,其渐近衰减由参数为0.42的标准误差函数描述。LCgau划分针对G2集合上的原子化能以及Database/3上的反应势垒高度的再现进行了优化,并且产生的结果优于B3LYP、CAM - BLYP以及我们所知的最佳LC泛函。结果突出了在短程包含相当一部分精确交换的重要性。使用相同参数,对新泛函进行了几何结构再现测试,以及对价电子、里德堡和电荷转移激发的测试,这些对于传统密度泛函理论来说是已知的挑战。我们的结论是,与其他现有的长程校正泛函相比,LCgau - BOP能够对热化学、化学反应和激发能提供始终更准确的描述。

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