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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Complexation of Ln(3+) Ions with Cyclam Dipicolinates: A Small Bridge that Makes Huge Differences in Structure, Equilibrium, and Kinetic Properties
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Complexation of Ln(3+) Ions with Cyclam Dipicolinates: A Small Bridge that Makes Huge Differences in Structure, Equilibrium, and Kinetic Properties

机译:Ln(3+)离子与双环甜菜碱的络合:小桥,使结构,平衡和动力学性质产生巨大差异

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摘要

The coordination properties toward the lanthanide ions of two macrocyclic ligands based on a cyclam platform containing picolinate pendant arms have been investigated. The synthesis of the ligands was achieved by using the well-known bis-aminal chemistry. One of the cyclam derivatives (cb-tedpa(2-)) is reinforced with a cross-bridge unit, which results in exceptionally inert [Ln(cb-tedpa)](+) complexes. The X-ray structures of the [La(cb-tedpa)Cl], [Gd(cb-tedpa)](+), and [Lu(Me(2)tedpa)](+) complexes indicate octadentate binding of the ligands to the metal ions. The analysis of the Yb3+-induced shifts in [Yb(Me(2)tedpa)](+) indicates that this complex presents a solution structure very similar to that observed in the solid state for the Lu3+ analogue. The X-ray structures of [La(H(2)Me(2)tedpa)(2)](3+) and [Yb(H(2)Me(2)tedpa)(2)](3+) complexes confirm the exocyclic coordination of the metal ions, which gives rise to coordination polymers with the metal coordination environment being fulfilled by oxygen atoms of the picolinate groups and water molecules. The X-ray structure of [Gd(Hcb-tedpa)(2)](+) also indicates exocyclic coordination that in this case results in a discrete structure with an eight-coordinated metal ion. The nonreinforced complexes [Ln(Me(2)tedpa)](+) were prepared and isolated as chloride salts in nonaqueous media. However, these complexes were found to undergo dissociation in aqueous solution, except in the case of the complexes with the smallest Ln(3+) ions (Ln(3+) = Yb3+ and Lu3+). A DFT investigation shows that the increased stability of the [Ln(Me(2)tedpa)](+) complexes in solution across the lanthanide series is the result of an increased binding energy of the ligand due to the increased charge density of the Ln(3+) ion.
机译:已经研究了基于含有吡咯烷酸酯侧链的Cyclam平台对两个大环配体对镧系离子的配位性能。配体的合成是通过使用众所周知的双缩醛化学方法完成的。一种仙客来衍生物(cb-tedpa(2-))用跨桥单元增强,这会导致异常惰性的[Ln(cb-tedpa)](+)络合物。 [La(cb-tedpa)Cl],[Gd(cb-tedpa)](+)和[Lu(Me(2)tedpa)](+)配合物的X射线结构表明配体的八齿结合金属离子。对Yb3 +诱导的[Yb(Me(2)tedpa)](+)中的位移的分析表明,该复合物的溶液结构与在Lu3 +类似物的固态状态下观察到的非常相似。 [La(H(2)Me(2)tedpa)(2)](3+)和[Yb(H(2)Me(2)tedpa)(2)](3+)络合物的X射线结构证实了金属离子的环外配位,这产生了配位聚合物,而金属配位环境是由吡啶甲酸基团的氧原子和水分子实现的。 [Gd(Hcb-tedpa)(2)](+)的X射线结构还表明了环外配位,在这种情况下会形成具有八配位金属离子的离散结构。制备非增强复合物[Ln(Me(2)tedpa)](+),并在非水介质中分离为氯化物盐。但是,发现这些配合物在水溶液中会发生解离,除非具有最小Ln(3+)离子的配合物(Ln(3+)= Yb3 +和Lu3 +)。 DFT研究表明,在整个镧系中,[Ln(Me(2)tedpa)](+)配合物在溶液中的稳定性增加是由于Ln电荷密度增加,配体结合能增加的结果(3+)离子。

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