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范德华复合物的比较密度泛函理论研究:稀有气体二聚体、碱土金属二聚体、锌二聚体以及锌-稀有气体二聚体

Comparative DFT study of van der Waals complexes: rare-gas dimers, alkaline-earth dimers, zinc dimer, and zinc-rare-gas dimers.

作者信息

Zhao Yan, Truhlar Donald G

机构信息

Department of Chemistry and Supercomputing Institute, University of Minnesota, Minneapolis, Minnesota 55455-0431, USA.

出版信息

J Phys Chem A. 2006 Apr 20;110(15):5121-9. doi: 10.1021/jp060231d.

Abstract

Recent interest in the application of density functional theory prompted us to test various functionals for the van der Waals interactions in the rare-gas dimers, the alkaline-earth metal dimers, zinc dimer, and zinc-rare-gas dimers. In the present study, we report such tests for 18 DFT functionals, including both some very recent functionals and some well-established older ones. We draw the following conclusions based on the mean errors in binding energies and complex geometries: (1) B97-1 gives the best performance for predicting the geometry of rare-gas dimers, whereas M05-2X and B97-1 give the best energetics for rare-gas dimers. (2) PWB6K gives the best performance for the prediction of the geometry of the alkaline-earth metal dimers, zinc dimers, and zinc-rare-gas dimers. M05-2X gives the best energetics for the metal dimers, whereas B97-1 gives the best energetics for the zinc-rare-gas dimers. (3) The M05 functional is unique in providing good accuracy for both covalent transition-metal dimers and van der Waals metal dimers. (4) The combined mean percentage unsigned error in geometries and energetics shows that M05-2X and MPWB1K are the overall best methods for the prediction of van der Waals interactions in metal and rare-gas van der Waals dimers.

摘要

最近对密度泛函理论应用的关注促使我们测试各种泛函对稀有气体二聚体、碱土金属二聚体、锌二聚体以及锌 - 稀有气体二聚体中范德华相互作用的描述。在本研究中,我们报告了对18种密度泛函理论(DFT)泛函的此类测试,其中包括一些最新的泛函和一些已确立的旧泛函。基于结合能和复合物几何结构的平均误差,我们得出以下结论:(1)B97 - 1在预测稀有气体二聚体的几何结构方面表现最佳,而M05 - 2X和B97 - 1在稀有气体二聚体的能量计算方面表现最佳。(2)PWB6K在预测碱土金属二聚体、锌二聚体以及锌 - 稀有气体二聚体的几何结构方面表现最佳。M05 - 2X在金属二聚体的能量计算方面表现最佳,而B97 - 1在锌 - 稀有气体二聚体的能量计算方面表现最佳。(3)M05泛函在为共价过渡金属二聚体和范德华金属二聚体提供良好准确性方面具有独特性。(4)几何结构和能量计算的综合平均百分比无符号误差表明,M05 - 2X和MPWB1K是预测金属和稀有气体范德华二聚体中范德华相互作用的总体最佳方法。

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