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评估局部杂化泛函与 DFT-D3 校正相结合,用于计算热化学和动力学数据。

Evaluation of a combination of local hybrid functionals with DFT-D3 corrections for the calculation of thermochemical and kinetic data.

机构信息

Institut für Chemie, Theoretische Chemie, Technische Universität Berlin, Sekr. C7, Strasse des 17. Juni 135, D-10623 Berlin, Germany.

出版信息

J Phys Chem A. 2011 Aug 18;115(32):8990-6. doi: 10.1021/jp202770c. Epub 2011 Jul 27.

DOI:10.1021/jp202770c
PMID:21749093
Abstract

Due to their position-dependent exact exchange admixture, local hybrid functionals offer a higher flexibility and thus the potential for more universal and accurate exchange correlation functionals compared to global hybrids with a constant admixture, as has been demonstrated in previous work. Yet, the local hybrid constructions used so far do not account for the inclusion of dispersion-type interactions. As a first exploratory step toward a more general approach that includes van der Waals-type interactions with local hybrids, the present work has added DFT-D3-type corrections to a number of simple local hybrid functionals. Optimization of only the s(8) and s(r,6) parameters for the S22 set provides good results for weak interaction energies but deteriorates the excellent performance of the local hybrids for G3 atomization energies and for classical reaction barriers. A combined optimization of the two DFT-D3 parameters with one of the two parameters of the spin-polarized local mixing function (LMF) of a local hybrid for a more general optimization set provides simultaneously accurate dispersion energies, improved atomization energies, and accurate reaction barriers, as well as excellent alkane protobranching ratios. For other LMFs, the improvements of such a combined optimization for the S22 energies have been less satisfactory. The most notable advantage of the dispersion-corrected local hybrids over, for example, a B3LYP-D3 approach, is in the much more accurate reaction barriers.

摘要

由于其位置相关的精确交换混合,局部混合泛函相对于具有恒定混合的全局混合具有更高的灵活性,因此具有潜在的更通用和准确的交换相关泛函,如先前的工作所示。然而,迄今为止使用的局部混合构造并未考虑包括色散型相互作用。作为一种更通用的方法的初步探索性步骤,该方法包括与局部混合的范德华型相互作用,本工作已将 DFT-D3 型校正添加到许多简单的局部混合泛函中。仅对 S22 集合的 s(8)和 s(r,6)参数进行优化,可以为弱相互作用能提供良好的结果,但会降低局部混合在 G3 原子化能和经典反应势垒方面的优异性能。对于更通用的优化集合,通过局部混合的自旋极化局部混合函数(LMF)的两个参数之一对两个 DFT-D3 参数之一进行联合优化,同时提供准确的色散能、改进的原子化能和准确的反应势垒,以及优异的烷烃原支化比。对于其他 LMF,对于 S22 能量的这种联合优化的改进不太令人满意。与例如 B3LYP-D3 方法相比,经色散校正的局部混合的最显著优势在于更准确的反应势垒。

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