Laboratorio de Rayos X y Materiales Moleculares, Departamento de Física Fundamental II, Facultad de Física, Universidad de La Laguna, Avda, Astrofísica Francisco Sánchez s/n, 38204 La Laguna, Tenerife, Spain.
Chemistry. 2010 Apr 6;16(13):4037-47. doi: 10.1002/chem.200903053.
The preparation, X-ray crystallography and magnetic investigation of the first examples of methanetriacetate (mta)-containing lanthanide(III) complexes of formulae Gd(mta)(H(2)O)(3)4 n H(2)O (1) Gd(mta)(H(2)O)(3)2 n H(2)O (2) and Gd(2)(mta)(2)(H(2)O)(2)2 n H(2)O (3) are described herein. This tripodal ligand promotes the formation of 6(3) networks; thus 1 consists of a honeycomb structure, whereas in 2 two of these layers are condensed to form a rare five-connected two-dimensional (4(8)6(2)) network. Compound 3 can be seen as an aggregation of 6(3) layers leading to a three-dimensional (6,6)-connected binodal (4(12)6(3))(4(9)6(6))-nia net, in which the gadolinium(III) ions and the mta ligands act as octahedral and as trigonal prismatic nodes, respectively. The magnetic properties of 1-3 were investigated in the temperature range 1.9-300 K. A close fit to the Curie law (1) and weak either antiferro- [J=-0.0063(1) cm(-1) (2)] or ferromagnetic [J=+0.0264(6) cm(-1) (3)] interactions between the Gd(III) ions are observed; the different exchange pathways involved [extended tris-bidentate mta (1) and mu-O(1);kappa(2)O(1),O(2) (2 and 3) plus single syn-syn carboxylate-mta (3)] accounting for these magnetic features. The nature and magnitude of the magnetic interactions, between the Gd(III) ions in 1-3, agree with the small amount of data existing in the literature for these kind of bridges.
本文描述了首例包含甲烷三乙酸(mta)的镧系(III)配合物Gd(mta)(H(2)O)(3)4 n H(2)O (1) Gd(mta)(H(2)O)(3)2 n H(2)O (2) 和Gd(2)(mta)(2)(H(2)O)(2)2 n H(2)O (3) 的制备、X 射线晶体学和磁性研究。这种三脚架配体促进了 6(3)网络的形成;因此,1 由蜂窝结构组成,而在 2 中,其中两个层凝聚形成罕见的五连接二维(4(8)6(2))网络。化合物 3 可以被看作是 6(3)层的聚集,导致三维(6,6)-连接双节点(4(12)6(3))(4(9)6(6))-nia 网,其中镧系(III)离子和 mta 配体分别作为八面体和三角棱柱体节点。1-3 的磁性在 1.9-300 K 的温度范围内进行了研究。观察到对居里定律(1)的紧密拟合以及镧系(III)离子之间的弱反铁磁[J=-0.0063(1) cm(-1) (2)]或铁磁[J=+0.0264(6) cm(-1) (3)]相互作用;所涉及的不同交换途径[扩展的三齿双齿 mta (1)和 mu-O(1);kappa(2)O(1),O(2) (2 和 3)加单个顺式顺式羧基-mta (3)]解释了这些磁性特征。1-3 中镧系(III)离子之间的磁性相互作用的性质和大小与文献中存在的这些类型桥的少量数据一致。