首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Databases for transition element bonding: Metal-metal bond energies and bond lengths and their use to test hybrid, hybrid meta, and meta density functionals and generalized gradient approximations
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Databases for transition element bonding: Metal-metal bond energies and bond lengths and their use to test hybrid, hybrid meta, and meta density functionals and generalized gradient approximations

机译:过渡元素键合的数据库:金属-金属键能和键长及其在测试杂化,杂化元和元密度功能以及广义梯度近似中的用途

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摘要

We propose a data set of bond lengths for 8 selected transition metal dimers (Ag-2, Cr-2, Cu-2, CuAg, Mo-2, Ni-2, V-2, and Zr-2) and another data set containing their atomization energies and the atomization energy of ZrV, and we use these for testing density functional theory. The molecules chosen for the test sets were selected on the basis of the expected reliability of the data and their ability to constitute a diverse and representative set of transition element bond types while the data sets are kept small enough to allow for efficient testing of a large number of computational methods against a very reliable subset of experimental data. In this paper we test 42 different functionals: 2 local spin density approximation (LSDA) functionals, 12 generalized gradient approximation (GGA) methods, 13 hybrid GGAs, 7 meta GGA methods, and 8 hybrid meta GGAs. We find that GGA density functionals are more accurate for the atomization energies of pure transition metal systems than are their meta, hybrid, or hybrid meta analogues. We find that the errors for atomization energies and bond lengths are not as large if we limit ourselves to dimers with small amounts of multireference character. We also demonstrate the effects of increasing the fraction of Hartree-Fock exchange in multireference systems by computing the potential energy curve for Cr-2 and Mo-2 with several functionals. We also find that BLYP is the most accurate functional for bond energies and is reasonably accurate for bond lengths. The methods that work well for transition metal bonds are found to be quite different from those that work well for organic and other main group chemistry.
机译:我们提出了8个选定的过渡金属二聚体(Ag-2,Cr-2,Cu-2,CuAg,Mo-2,Ni-2,V-2和Zr-2)的键长数据集和另一个数据集包含它们的雾化能量和ZrV的雾化能量,我们将它们用于测试密度泛函理论。根据数据的预期可靠性及其构成多种多样且具有代表性的过渡元素键类型集的能力来选择用于测试集的分子,同时将数据集保持足够小以允许对大分子进行有效测试。针对非常可靠的实验数据子集的多种计算方法。在本文中,我们测试了42种不同的功能:2种局部自旋密度逼近(LSDA)功能,12种广义梯度逼近(GGA)方法,13种混合GGA,7种meta GGA方法和8种混合meta GGA。我们发现,GGA密度泛函对于纯过渡金属系统的雾化能比它们的间位,杂化或杂化元类似物更准确。我们发现,如果我们将自身限制在具有少量多参比特征的二聚体上,则雾化能和键长的误差就不会那么大。我们还通过计算具有多种功能的Cr-2和Mo-2的势能曲线,证明了在多参考系统中增加Hartree-Fock交换比例的效果。我们还发现,BLYP对于键能而言是最准确的功能,对于键长度来说也相当准确。发现对过渡金属键有效的方法与对有机基团和其他主化学基团有效的方法完全不同。

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