Valencia L, Martinez J, Macías A, Bastida R, Carvalho R A, Geraldes C F G C
Departamento de Química Inorgánica, Facultad de Química, Universidad de Santiago de Compostela, Avda. de las Ciencias s/n, E-15782, Santiago de Compostela, Spain.
Inorg Chem. 2002 Oct 7;41(20):5300-12. doi: 10.1021/ic0257017.
Complexes between the Py(2)N(6)Ac(4) (H(4)L) ligand containing four carboxylate pendant arms and trivalent lanthanide ions have been synthesized, and structural studies have been made both in the solid state and aqueous solution. The crystal structures of the La, Ce, Sm, Tb, Dy, Ho, Er, Tm, and Lu complexes, with chemical formulas LaH(2)L.3H(2)O (1), Ce(4)L(2)(4).30H(2)O (2), [SmHL].EtOH.3H(2)O (5), [TbHL].EtOH.3H(2)O (8), [DyHL].2EtOH.2H(2)O (9), [HoHL].3H(2)O (10), [ErHL].EtOH.3H(2)O (11) [TmHL].EtOH.3H(2)O (12), and [LuHL].3H(2)O (14), have been determined by single-crystal X-ray crystallography. In the solid state, the complexes of the lighter lanthanide ions La(3+)-Dy(3+) show a 10-coordinated geometry close to a distorted bicapped antiprism, where the carboxylate pendants are situated alternatively above and below the best plane that contains the nitrogen donor atoms. The complexes of the heavier ions, Ho(3+)-Lu(3+), have a 9-coordinated geometry close to distorted tricapped trigonal prism, with one of the pendant carboxylate groups uncoordinated. The ligand is in a "twist-fold" conformation, where the twisting of the pyridine units is accompanied by an overall folding of the major ring of the macrocycle so that the pyridine nitrogen atoms and the metal are far from linear. The aqueous solution structures of the complexes were thoroughly characterized, the diamagnetic ones (La(3+) and Lu(3+)) by their COSY NMR spectra, and the paramagnetic complexes using a linear least-squares fitting of the (1)H LIS (lanthanide-induced shift) and LIR (lanthanide-induced relaxation) data with rhombic magnetic susceptibility tensors. The solution structures obtained for the La(3+)-Dy(3+) complexes (10-coordinate) and for the Tm(3+)-Lu(3+) complexes (9-coordinate) are in very good agreement with the corresponding crystal structures. However, the 10-coordinate structure is still exclusive in solution for the Ho(3+) complex and predominant for the Er(3+) complex.
已合成了含有四个羧酸酯侧链臂的Py(2)N(6)Ac(4)(H(4)L)配体与三价镧系离子之间的配合物,并对其在固态和水溶液中的结构进行了研究。通过单晶X射线晶体学确定了镧、铈、钐、铽、镝、钬、铒、铥和镥配合物的晶体结构,其化学式分别为LaH(2)L.3H(2)O(1)、Ce(4)L(2)(4).30H(2)O(2)、[SmHL].EtOH.3H(2)O(5)、[TbHL].EtOH.3H(2)O(8)、[DyHL].2EtOH.2H(2)O(9)、[HoHL].3H(2)O(10)、[ErHL].EtOH.3H(2)O(11)、[TmHL].EtOH.3H(2)O(12)和[LuHL].3H(2)O(14)。在固态下,较轻镧系离子La(3+)-Dy(3+)的配合物呈现出接近扭曲双帽反棱柱的10配位几何构型,其中羧酸酯侧链交替位于包含氮供体原子的最佳平面上方和下方。较重离子Ho(3+)-Lu(3+)的配合物具有接近扭曲三帽三角棱柱的9配位几何构型,其中一个羧酸酯侧链基团未配位。配体处于“扭曲折叠”构象,其中吡啶单元的扭曲伴随着大环主环的整体折叠,使得吡啶氮原子和金属原子远非线性排列。对配合物的水溶液结构进行了全面表征,通过COSY NMR光谱对抗磁性配合物(La(3+)和Lu(3+))进行了表征,对顺磁性配合物则使用(1)H LIS(镧系诱导位移)和LIR(镧系诱导弛豫)数据与菱形磁化率张量进行线性最小二乘拟合。从La(3+)-Dy(3+)配合物(10配位)和Tm(3+)-Lu(3+)配合物(9配位)获得的溶液结构与相应的晶体结构非常吻合。然而,10配位结构在Ho(3+)配合物的溶液中仍然唯一存在,在Er(3+)配合物的溶液中占主导地位。