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从镧(III)到镥(III)的所有镧系三价阳离子的Sparkle/PM6参数。

Sparkle/PM6 Parameters for all Lanthanide Trications from La(III) to Lu(III).

作者信息

Freire Ricardo O, Simas Alfredo M

机构信息

Departamento de Química, Universidade Federal de Sergipe, 49.100-000, São Cristóvão, SE, Brazil and Departamento de Química Fundamental, Universidade Federal de Pernambuco, 50.740-540, Recife, PE, Brazil.

出版信息

J Chem Theory Comput. 2010 Jul 13;6(7):2019-23. doi: 10.1021/ct100192c. Epub 2010 Jun 22.

Abstract

PM6 is the first semiempirical method to be released already parametrized for the elements of the periodic table, from hydrogen to bismuth (Z = 83), with the exception of the lanthanides from cerium (Z = 58) to ytterbium (Z = 70). In order to fill this gap, we present in this article a generalization of our Sparkle Model for the quantum chemical semiempirical calculation of lanthanide complexes to PM6. Accordingly, we present Sparkle/PM6 parameters for all lanthanide trications from La(III) to Lu(III). The validation procedure again considered only high-quality crystallographic structures and included 633 complexes. Sparkle/PM6 unsigned mean errors UME(Ln-L)s, corresponding to all the interatomic distances between the lanthanide ion and the atoms directly coordinated to it, range from 0.066 to 0.086 Å for Gd(III) and Ce(III), respectively. These minimum and maximum UME(Ln-L)s across the lanthanide series are comparable to the Sparkle/AM1 values of 0.054 and 0.085 Å for Ho(III) and Pr(III), respectively, as well as to the values for Sparkle/PM3 of 0.064 and 0.093 Å for Gd(III) and Pr(III), respectively. Moreover, for all 15 lanthanide ions, these interatomic distance deviations follow a γ distribution within a 95% level of confidence, indicating that these errors appear to be random around a mean, freeing the model of systematic errors, at least within the validation set. Sparkle/PM6 presented here, therefore, broadens the range of applicability of PM6 to the coordination compounds of the rare earth metals.

摘要

PM6是第一种已针对元素周期表中从氢到铋(Z = 83)进行参数化的半经验方法,但不包括从铈(Z = 58)到镱(Z = 70)的镧系元素。为了填补这一空白,我们在本文中提出了将用于镧系配合物量子化学半经验计算的Sparkle模型推广到PM6。相应地,我们给出了从La(III)到Lu(III)所有镧系三价阳离子的Sparkle/PM6参数。验证过程同样仅考虑高质量的晶体结构,共包括633个配合物。对于Gd(III)和Ce(III),Sparkle/PM6的无符号平均误差UME(Ln-L)s,即镧系离子与其直接配位原子之间的所有原子间距离,分别为0.066至0.086 Å。整个镧系系列中这些最小和最大的UME(Ln-L)s,分别与Ho(III)和Pr(III)的Sparkle/AM1值0.054和0.085 Å以及Gd(III)和Pr(III)的Sparkle/PM3值0.064和0.093 Å相当。此外,对于所有15种镧系离子,这些原子间距离偏差在95%置信水平内遵循γ分布,这表明这些误差似乎围绕平均值随机出现,至少在验证集范围内使模型没有系统误差。因此,本文提出的Sparkle/PM6拓宽了PM6在稀土金属配位化合物中的适用范围。

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