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三价镧系和锕系元素的水合及双(三嗪基)吡啶配合物中键合的拓扑研究:共价性意味着稳定性吗?

Topological Study of Bonding in Aquo and Bis(triazinyl)pyridine Complexes of Trivalent Lanthanides and Actinides: Does Covalency Imply Stability?

作者信息

Fryer-Kanssen Izaak, Austin Jonathan, Kerridge Andrew

机构信息

Department of Chemistry, Lancaster University , Bailrigg, Lancaster LA1 4YB, U.K.

National Nuclear Laboratory , Chadwick House, Birchwood Park, Warrington WA3 6AE, U.K.

出版信息

Inorg Chem. 2016 Oct 17;55(20):10034-10042. doi: 10.1021/acs.inorgchem.6b00968. Epub 2016 Aug 5.

Abstract

The geometrical and electronic structures of Ln[(HO)] and [Ln(BTP)], where Ln = Ce-Lu, have been evaluated at the density functional level of theory using three related exchange-correlation (xc-)functionals. The BHLYP xc-functional was found to be most accurate, and this, along with the B3LYP functional, was used as the basis for topological studies of the electron density via the quantum theory of atoms in molecules (QTAIM). This analysis revealed that, for both sets of complexes, bonding was almost identical across the Ln series and was dominated by ionic interactions. Geometrical and electronic structures of actinide (An = Am, Cm) analogues were evaluated, and [An(HO)] + [Ln(BTP)] → [Ln(HO)] + [An(BTP)] exchange reaction energies were evaluated, revealing Eu ↔ Am and Gd ↔ Cm reactions to favor the An species. Detailed QTAIM analysis of Eu, Gd, Am, and Cm complexes revealed increased covalent character in M-O and M-N bonds when M = An, with this increase being more pronounced in the BTP complexes. This therefore implies a small electronic contribution to An-N bond stability and the experimentally observed selectivity of the BTP ligand for Am and Cm over lanthanides.

摘要

已使用三种相关的交换关联(xc-)泛函在密度泛函理论水平上评估了Ln[(HO)]和[Ln(BTP)](其中Ln = Ce-Lu)的几何结构和电子结构。发现BHLYP xc-泛函最为准确,并将其与B3LYP泛函一起用作通过分子中原子的量子理论(QTAIM)对电子密度进行拓扑研究的基础。该分析表明,对于这两组配合物,整个Ln系列的键合几乎相同,且以离子相互作用为主导。评估了锕系元素(An = Am,Cm)类似物的几何结构和电子结构,并评估了[An(HO)] + [Ln(BTP)] → [Ln(HO)] + [An(BTP)]的交换反应能量,结果表明Eu ↔ Am和Gd ↔ Cm反应有利于An物种。对Eu、Gd、Am和Cm配合物进行的详细QTAIM分析表明,当M = An时,M-O和M-N键中的共价特征增加,这种增加在BTP配合物中更为明显。因此,这意味着对An-N键稳定性有较小的电子贡献,以及实验观察到的BTP配体对Am和Cm比对镧系元素具有选择性。

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