Mato-Iglesias Marta, Roca-Sabio Adrián, Pálinkás Zoltán, Esteban-Gómez David, Platas-Iglesias Carlos, Tóth Eva, de Blas Andrés, Rodríguez-Blas Teresa
Departamento de Quimica Fundamental, Universidade da Coruna, Campus da Zapateira, Alejandro de la Sota 1, 15008 A Coruna, Spain.
Inorg Chem. 2008 Sep 1;47(17):7840-51. doi: 10.1021/ic800878x. Epub 2008 Aug 2.
We have synthesized a new macrocyclic ligand, N,N'-Bis[(6-carboxy-2-pyridyl)methyl]-1,7-diaza-12-crown-4 (H 2bp12c4), designed for complexation of lanthanide ions in aqueous solution. The X-ray crystal structure of the Gd (III) complex shows that the metal ion is directly bound to the eight donor atoms of the bp12c4 ligand, the ninth coordination site being occupied by an oxygen atom of a carboxylate group of a neighboring [Gd(bp12c4)] (+) unit, while the structure of the Lu (III) analogue shows the metal ion being only eight-coordinate. The hydration numbers obtained from luminescence lifetime measurements in aqueous solution of the Eu (III) and Tb (III) complexes suggest an equilibrium in aqueous solution between a dihydrated ( q = 2), ten-coordinate and a monohydrated ( q = 1), nine-coordinate species. This has been confirmed by a variable temperature UV-vis spectrophotometric study on the Eu (III) complex. The structure of the complexes in solution has been investigated by (1)H and (13)C NMR spectroscopy, as well as by theoretical calculations performed at the DFT (B3LYP) level. The results indicate that the change in hydration number occurring around the middle of the lanthanide series is accompanied by a change in the conformation adopted by the complexes in solution [Delta(lambdalambdalambdalambda) for q = 2 and Lambda(deltalambdadeltalambda) for q = 1]. The structure calculated for the Yb (III) complex (Lambda(deltalambdadeltalambda)) is in good agreement with the experimental structure in solution, as demonstrated by the analysis of the Yb (III)-induced paramagnetic (1)H shifts.
我们合成了一种新的大环配体N,N'-双[(6-羧基-2-吡啶基)甲基]-1,7-二氮杂-12-冠-4(H₂bp12c4),其设计用于在水溶液中与镧系离子络合。钆(III)配合物的X射线晶体结构表明,金属离子直接与bp12c4配体的八个供体原子结合,第九个配位点被相邻[Gd(bp12c4)]⁺单元的羧酸根基团的一个氧原子占据,而镥(III)类似物的结构表明金属离子仅为八配位。通过对铕(III)和铽(III)配合物在水溶液中的发光寿命测量得到的水合数表明,在水溶液中二水合(q = 2)、十配位和一水合(q = 1)、九配位物种之间存在平衡。这已通过对铕(III)配合物的变温紫外可见分光光度研究得到证实。通过¹H和¹³C NMR光谱以及在DFT(B3LYP)水平上进行的理论计算研究了溶液中配合物的结构。结果表明,镧系系列中间附近发生的水合数变化伴随着溶液中配合物所采用构象的变化[q = 2时为Δ(λλλλ),q = 1时为Λ(δλδλ)]。如通过镱(III)诱导的顺磁¹H位移分析所示,为镱(III)配合物计算的结构(Λ(δλδλ))与溶液中的实验结构高度吻合。