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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Comparative Analysis of the Performance of Commonly Available Density Functionals in the Determination of Geometrical Parameters for Copper Complexes
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Comparative Analysis of the Performance of Commonly Available Density Functionals in the Determination of Geometrical Parameters for Copper Complexes

机译:铜配合物几何参数确定中常用密度泛函性能的比较分析

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摘要

In this study, a set of 50 transition-metal complexes of Cu(I) and Cu(II), were used in the evaluation of 18 density functionals in geometry determination. In addition, 14 different basis sets were considered, including four commonly used Pople’s all-electron basis sets; four basis sets including popular types of effective-core potentials: Los Alamos, Steven-Basch-Krauss, and Stuttgart-Dresden; and six triple-f basis sets. The results illustrate the performance of different methodological alternatives for the treatment of geometrical properties in relevant copper complexes, pointing out Double-Hybrid (DH) and Long-range Correction (LC) Generalized Gradient Approximation (GGA) methods as better descriptors of the geometry of the evaluated systems. These however, are associated with a computational cost several times higher than some of the other methods employed, such as the M06 functional, which has also demonstrated a comparable performance. Regarding the basis sets, 6–311G(d) and 6–311G(d,p) were the best performing approaches. In addition, the results show that the use of effective-core potentials has a limited impact, in terms of the accuracy in the determination of metal-ligand bondlengths and angles in our dataset of copper complexes. Hence, these could become a good alternative for the geometrical description of these systems, particularly CEP-121G and SDD basis sets, if one is considering larger copper complexes where the computational cost could be an issue.
机译:在这项研究中,一组50个Cu(I)和Cu(II)的过渡金属络合物用于几何确定中18个密度泛函的评估。此外,还考虑了14种不同的基础集,其中包括四种常用的Pople全电子基础集;四个基本集合,包括有效核心潜力的流行类型:洛斯阿拉莫斯,史蒂芬-巴斯-克劳斯和斯图加特-德累斯顿;和六个三重f基集。结果说明了不同方法替代方法在相关铜络合物中处理几何特性的性能,并指出了双混合(DH)和长距离校正(LC)广义梯度逼近(GGA)方法可以更好地描述铜的几何形状。评估系统。但是,这些方法的计算成本比其他一些采用的方法(例如M06功能)高出好几倍,而M06功能也已显示出可比的性能。关于基集,6-311G(d)和6-311G(d,p)是性能最好的方法。此外,结果表明,就确定铜络合物数据集中的金属-配体键长和角度的准确性而言,使用有效核心电势的影响有限。因此,如果人们正在考虑计算成本可能成为问题的更大的铜络合物,则这些可能成为这些系统的几何描述的良好替代方法,特别是CEP-121G和SDD基集。

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