Laboratorio de Rayos X y Materiales Moleculares, Departamento de Física Fundamental II, Facultad de Física, Universidad de La Laguna, Av. Astrofísico Francisco Sánchez s/n, 38071, La Laguna, Tenerife, Spain.
Dalton Trans. 2010 Aug 21;39(31):7286-93. doi: 10.1039/b920156d. Epub 2010 Jun 30.
Two new digadolinium(III) complexes with monocarboxylate ligands, [Gd2(pac)6(H2O)4] (1) and [Gd2(tpac)6(H2O)4] (2) (Hpac = pentanoic acid and Htpac = 3-thiopheneacetic acid), have been prepared and their structures determined by X-ray diffraction on single crystals. Their structures consist of neutral and isolated digadolinium(III) units, containing six monocarboxylate ligands and four coordinated water molecules, the bridging skeleton being built by a muO(1):kappa2O(1)O(2) framework. This structural pattern has already been observed in the parent acetate-containing compound [Gd2(ac)6(H2O)4] x 4 H2O (3) whose structure and magnetic properties were reported elsewhere (L. Cañadillas-Delgado, O. Fabelo, J. Cano, J. Pasán, F. S. Delgado, M. Julve, F. Lloret and C. Ruiz-Pérez, CrystEngComm, 2009, 11, 2131). Each gadolinium(III) ion in 1 and 2 is nine-coordinated with seven carboxylate-oxygen atoms from four pac (1)/tpac (2) ligands and two water molecules (1 and 2) building a distorted monocapped square antiprism. The values of the intramolecular gadolinium-gadolinium separation are 4.1215(5) (1), 4.1255(6) (2) and 4.1589(3) A (3) and those of the angle at the oxo-carboxylate bridge (theta) are 113.16(13) (1), 112.5(2) (2) and 115.47(7) degrees (3). Magnetic susceptibility measurements in the temperature range 1.9-300 K reveal the occurrence of a weak intramolecular antiferromagnetic interaction [J = -0.032(1) (1) and -0.012(1) cm(-1) (2), the Hamiltonian being defined as H = -JS(A) x S(B)] in contrast with the intramolecular ferromagnetic coupling which occurs in 3 (J = +0.031(1) cm(-1)). The magneto-structural data of 1-3 show the relevance of the geometrical parameters at the muO(1):kappa2O(1)O(2) bridge on the nature of the magnetic coupling between two gadolinium(III) ions.
两种新的单核镝(III)配合物与单羧酸配体,[Gd2(pac)6(H2O)4](1)和[Gd2(tpac)6(H2O)4](2)(Hpac = 戊酸和 Htpac = 3-噻吩乙酸),已经通过单晶 X 射线衍射确定了其结构。它们的结构由中性和孤立的镝(III)单元组成,包含六个单羧酸配体和四个配位水分子,桥接骨架由μO(1):κ2O(1)O(2)框架构建。这种结构模式已经在含有乙酸盐的母体化合物[Gd2(ac)6(H2O)4]x4H2O(3)中观察到,其结构和磁性性质在其他地方已经报道过(L. Canadillas-Delgado、O. Fabelo、J. Cano、J. Pasán、F. S. Delgado、M. Julve、F. Lloret 和 C. Ruiz-Pérez,CrystEngComm,2009,11,2131)。1 和 2 中的每个镝(III)离子均与来自四个 pac(1)/tpac(2)配体和两个水分子(1 和 2)的七个羧基氧原子配位,形成一个扭曲的单核帽式四方反棱柱体。分子内镝-镝分离的数值分别为 4.1215(5)(1)、4.1255(6)(2)和 4.1589(3)A(3),并且氧-羧酸盐桥(θ)的角度分别为 113.16(13)(1)、112.5(2)(2)和 115.47(7)度(3)。在 1.9-300 K 的温度范围内进行的磁化率测量表明,与发生在 3 中的分子内铁磁耦合相反,存在较弱的分子内反铁磁相互作用[J = -0.032(1)(1)和-0.012(1)cm-1(2),哈密顿定义为 H = -JS(A)×S(B)]。1-3 的磁结构数据表明,μO(1):κ2O(1)O(2)桥的几何参数对两个镝(III)离子之间的磁耦合性质具有重要意义。