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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 >Lanthanide(III) complexes with a tetrapyridine pendant-armed macrocyclic ligand: H-1 NMR structural determination in solution, X-ray diffraction, and density-functional theory calculations
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Lanthanide(III) complexes with a tetrapyridine pendant-armed macrocyclic ligand: H-1 NMR structural determination in solution, X-ray diffraction, and density-functional theory calculations

机译:镧系元素(III)与四吡啶悬臂大环配体的配合物:溶液中的H-1 NMR结构测定,X射线衍射和密度泛函理论计算

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Complexes between the tetrapyridyl pendant-armed macrocyclic ligand (L) and the trivalent lanthanide ions have been synthesized, and structural studies have been made both in the solid state and in aqueous solution. The crystal structures of the La, Ce, Pr, Gd, Tb, Er, and Tm complexes have been determined by single-crystal X-ray crystallography. In the solid state, all the cation complexes show a 10-coordinated geometry close to a distorted bicapped antiprism, with the pyridine pendants situated alternatively above and below the main plane of the macrocycle. The conformations of the two five-membered chelate rings present in the complexes change along the lanthanide series. The La(III) and Ce(III) complexes show a lambda delta (or delta lambda) conformation, while the complexes of the heavier lanthanide ions present lambda lambda (or delta delta) conformation. The cationic [Ln(L)](3+) complexes (Ln = La, Pr, Eu, Tb, and Tm) were also characterized by theoretical calculations at the density-functional theory (DFT) B3LYP level. The theoretical calculations predict a stabilization of the lambda lambda (or delta delta) conformation on decreasing the ionic radius of the Ln(III) ion, in agreement with the experimental evidence. The solution structures show a good agreement with the calculated ones, as demonstrated by paramagnetic NMR measurements (lanthanide induced shifts and relaxation rate enhancements). The H-1 NMR spectra indicate an effective D-2 symmetry of the complexes in D2O solution. The 1H lanthanide induced shifts (LIS) observed for the Ce(III), Tm(III), and Yb(III) complexes can be fit to a theoretical model assuming that dipolar contributions are dominant for all protons. The resulting calculated values are consistent with highly rhombic magnetic susceptibility tensors with the magnetic axes being coincident with the symmetry axes of the molecule. In contrast with the solid-state structure, the analysis of the LIS data indicates that the Ce(III) complexes present a lambda lambda (or delta delta) conformation in solution.
机译:已经合成了四吡啶基悬臂大环配体(L)和三价镧系离子之间的配合物,并且已经在固态和水溶液中进行了结构研究。 La,Ce,Pr,Gd,Tb,Er和Tm络合物的晶体结构已通过单晶X射线晶体学确定。在固态状态下,所有阳离子络合物均显示10位配位的几何构型,接近扭曲的双峰反棱镜,吡啶侧基交替位于大环主平面的上方和下方。配合物中存在的两个五元螯合环的构象沿镧系系列变化。 La(III)和Ce(III)配合物显示出λδ(或δlambda)构象,而较重的镧系离子的配合物则呈现λλ(或delta delta)构象。阳离子[Ln(L)](3+)配合物(Ln = La,Pr,Eu,Tb和Tm)也通过密度泛函理论(DFT)B3LYP级别的理论计算来表征。理论计算结果与实验证据一致,可预测Lamda lambda(或delta delta)构象在降低Ln(III)离子的离子半径时会稳定。溶液结构显示出与所计算的溶液结构良好的一致性,如顺磁性NMR测量所证实(镧系元素引起的位移和弛豫速率提高)。 H-1 NMR光谱表明D2O溶液中复合物的有效D-2对称性。假设偶极贡献在所有质子中占主导地位,对于Ce(III),Tm(III)和Yb(III)配合物观察到的1H镧系元素引起的位移(LIS)可以与理论模型相符。所得的计算值与高菱形磁化率张量一致,其磁轴与分子的对称轴重合。与固态结构相反,LIS数据的分析表明,Ce(III)配合物在溶液中呈现出λ(或δ-δ)构象。

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