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Benchmark Study of the Performance of Density Functional Theory for Bond Activations with (NiPd)-Based Transition-Metal Catalysts

机译:基于(NiPd)的过渡金属催化剂用于键活化的密度泛函理论性能的基准研究

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摘要

The performance of 23 density functionals, including one LDA, four GGAs, three meta-GGAs, three hybrid GGAs, eight hybrid meta-GGAs, and ten double-hybrid functionals, was investigated for the computation of activation energies of various covalent main-group single bonds by four catalysts: Pd, PdCl, PdCl2, and Ni (all in the singlet state). A reactant complex, the barrier, and reaction energy were considered, leading to 164 energy data points for statistical analysis. Extended Gaussian AO basis sets were used in all calculations. The best functional for the complete benchmark set relative to estimated CCSD(T)/CBS reference data is PBE0-D3, with an MAD value of 1.1 kcal mol−1 followed by PW6B95-D3, the double hybrid PWPB95-D3, and B3LYP-D3 (1.9 kcal mol−1 each). The other tested hybrid meta-GGAs perform less well (M06-HF: 7.0 kcal mol−1; M06-2X: 6.3 kcal mol−1; M06: 4.9 kcal mol−1) for the investigated reactions. In the Ni case, some double hybrids show larger errors due to partial breakdown of the perturbative treatment for the correlation energy in cases with difficult electronic structures (partial multi-reference character). Only double hybrids either with very low amounts of perturbative correlation (e.g., PBE0-DH) or that use the opposite-spin correlation component only (e.g., PWPB95) seem to be more robust. We also investigated the effect of the D3 dispersion correction. While the barriers are not affected by this correction, significant and mostly positive results were observed for reaction energies. Furthermore, six very recently proposed double-hybrid functionals were analyzed regarding the influence of the amount of Fock exchange as well as the type of perturbative correlation treatment. According to these results, double hybrids with <50–60 % of exact exchange and ∼30 % perturbative correlation perform best.
机译:为了计算各种共价主基团的活化能,研究了23个密度泛函的性能,包括一个LDA,四个GGA,三个meta-GGA,三个Hybrid GGA,八个Hybrid meta-GGA和十个双杂化泛函。 Pd,PdCl -,PdCl2和Ni(均处于单重态)这四种催化剂形成单键。考虑了反应物的配合物,势垒和反应能,得出了164个能量数据点用于统计分析。在所有计算中均使用扩展的高斯AO基集。相对于估计的CCSD(T)/ CBS参考数据,完整基准集的最佳功能是PBE0-D3,其MAD值为1.1 kcal mol -1 ,其次是双重混合动力PW6B95-D3 PWPB95-D3和B3LYP-D3(每个1.9 kcal mol -1 )。其他测试的混合meta-GGA的性能较差(M06-HF:7.0 kcal mol -1 ; M06-2X:6.3 kcal mol -1 ; M06:4.9 kcal mol -1 )用于研究的反应。在Ni情况下,由于电子结构困难(部分多参考特征)的情况下,由于对相关能量的微扰处理的部分破坏,某些双重混合动力系统显示出较大的误差。只有扰动相关性非常低的双杂种(例如,PBE0-DH)或仅使用反向旋转相关性成分(例如,PWPB95)的双杂种才显得更健壮。我们还研究了D3色散校正的效果。尽管势垒不受此校正的影响,但观察到的反应能量显着且大部分为阳性结果。此外,关于Fock交换量的影响以及微扰相关处理的类型,分析了六个非常新近提出的双杂交功能。根据这些结果,精确交换率小于50-60%且扰动相关性约为30%的双杂交种表现最佳。

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