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J Chem Phys. 2012 Jan 21;136(3):034102. doi: 10.1063/1.3676726.
In a recent letter [E. Proynov, Y. Shao, and J. Kong, Chem. Phys. Lett. 493, 381 (2010)], Becke's B05 model of nondynamic electron correlation in density functional theory was implemented self-consistently with computational efficiency (the "SCF-RI-B05" scheme). Important modifications of the algorithm were done in order to make the self-consistency feasible. In the present work, we give a complete account of the SCF-RI-B05 algorithm, including all the formulae for the analytical representation of the B05 functional and for its self-consistent field (SCF) potential. The average performance of the SCF-RI-B05 method reported in the above letter was somewhat less accurate, compared to the original B05 implementation, mainly because the parameters of the original B05 model were optimized with post-local-spin-density calculations. In this work, we report improved atomization energies with SCF-RI-B05, based on a SCF re-optimization of its four linear parameters. The re-optimized SCF-RI-B05 scheme is validated also on reaction barriers, and on the subtle energetics of NO dimer, an exemplary system of strong nondynamic correlation. It yields both the binding energy and the singlet-triplet splitting of the NO dimer correctly, and close to the benchmarks reported in the literature.
在最近的一封信中[E. Proynov、Y. Shao 和 J. Kong,Chem. Phys. Lett. 493, 381 (2010)],Becke 的密度泛函理论中非动态电子相关的 B05 模型被实现为具有计算效率的自洽(“SCF-RI-B05”方案)。为了使自洽成为可能,对算法进行了重要的修改。在本工作中,我们完整地介绍了 SCF-RI-B05 算法,包括 B05 泛函及其自洽场(SCF)势的解析表示的所有公式。上述信件中报告的 SCF-RI-B05 方法的平均性能与原始 B05 实现相比略有不准确,主要是因为原始 B05 模型的参数是通过后局部自旋密度计算进行优化的。在本工作中,我们报告了基于其四个线性参数的 SCF 重新优化的 SCF-RI-B05 的改进的原子化能。重新优化的 SCF-RI-B05 方案也在反应势垒和强非动态相关的典型系统 NO 二聚体的微妙能谱上得到验证。它正确地产生了 NO 二聚体的结合能和单重态三重态分裂,并接近文献中报告的基准。