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QM/MM modeling of the structures and properties of the beta-diketonate-based lanthanide complexes

机译:基于β-二酮酸酯的镧系元素络合物的结构和性质的QM / MM建模

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摘要

The structure and properties of the lanthanum and lutetium beta-diketonates and mixed Ln(dik)(3) ligand complexes with o-phenantroline, Ln(dik)(3)Phen, are modeled by using the quantum mechanical/molecular mechanical (QM/MM) technique with the universal force fields (UFF) in the MM part. The set of parameters for UFF was adjusted to obtain the adequate modeling of the structures. The Ln-O and Ln(dik)(3)-Phen bond energies were estimated by using the single-point calculations with Becke's three-parameter functional with Perdew-Wang correlational functional density functional theory. It is shown that the Ln-O and Ln(dik)(3)-Phen bond energies are decreasing in the series from nonbulky beta-diketonate ligands to their branched analogs. The introduction of the fluorinated substituents leads to substantial increase in bond energy. The natural bond orbital analysis was used for characterization of electronic structure of the complexes. (c) 2005 Wiley Periodicals, Inc.
机译:使用量子力学/分子力学(QM / MM)技术,在MM部分中具有通用力场(UFF)。调整UFF的参数集以获得结构的适当建模。 Ln-O和Ln(dik)(3)-Phen键能通过Becke的三参数泛函和Perdew-Wang相关函数密度泛函理论通过单点计算来估算。结果表明,Ln-O和Ln(dik)(3)-Phen键的能量从非大体积的β-二酮酸酯配体到其分支类似物系列呈下降趋势。氟化取代基的引入导致键能显着增加。自然键轨道分析用于表征配合物的电子结构。 (c)2005年Wiley Periodicals,Inc.

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