首页> 外文期刊>Russian Journal of Coordination Chemistry >Quantum chemical modeling of the mechanism of formation of bis-ligand Co(II) complexes based on polydentate heterocyclic azomethine derivatives: Competition between four-, five-, and six-coordination
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Quantum chemical modeling of the mechanism of formation of bis-ligand Co(II) complexes based on polydentate heterocyclic azomethine derivatives: Competition between four-, five-, and six-coordination

机译:基于络络杂环杂项衍生物的双配体CO(II)配合物形成机理的量子化学建模:四,五,六个协调之间的竞争

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摘要

The molecular structures and relative energies of four-, five-, and six-coordinate stereoisomers of bis-ligand Co(II) complexes based on polydentate heterocyclic azomethine derivatives (CoN2O2, CoN2O2Y, and CoN2O2Y2 coordination units of the isomers (Y = S, Se)) were calculated using density functional theory. In terms of the proposed quantum chemical model for the mechanism of CoL2 complex formation, the fivecoordinate structure of complexes with non-equivalent ligands, one being tridentate and the other being bidentate is most probable; this result is in line with experimental data.
机译:基于多晶杂环偶氮衍生物(CON2O2,CON2O2Y和异构体的CON2O2Y2配位单元的双 - 配体CO(II)配合物的四个,五 - 和六坐标立体异构体的分子结构和相对能量(异构体(Y = S, SE)使用密度函数理论计算。 就Col2复杂形成机制的提出量子化学模型而言,具有非等同配体的络合物的抗偏心结构,一个是三齿,另一个是二齿的。 该结果与实验数据一致。

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