†State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.
‡College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, P. R. China.
Inorg Chem. 2015 May 4;54(9):4337-44. doi: 10.1021/acs.inorgchem.5b00019. Epub 2015 Apr 23.
The synthesis, structural characterization, and magnetic properties of four related heterometallic complexes with formulas [Dy(III)2Co(II)(C7H5O2)8]·6H2O (1), [Dy(III)2Ni(II)(C7H5O2)8]·(C7H6O2)2 (2), Tb(III)2Co(II)(C7H5O2)8 (3), and Dy(III)2Cd(II)(C7H5O2)8 (4) were reported. Each of complexes has a perfectly linear arrangement of the metal ions with two terminal Ln(III) (Ln(III) = Dy(III), Tb(III)) ions and one central M(II) (M(II) = Co(II), Ni(II), Cd(II)) ion. It was found that 1-3 displayed obvious magnetic interactions between the spin carriers according to the direct current (dc) susceptibility measurements. Alternating current (ac) magnetic susceptibility measurements indicate that complexes 1-4 all exhibit single-molecule magnet (SMM) behavior, while the replacement of the diamagnetic Cd(II) by paramagnetic ions leads to a significant slowing of the relaxation thanks to the magnetic interactions between 3d and 4f ions, resulting in higher relaxation barrier for complexes 1 and 2. Moreover, both Dy2Co and Dy2Ni compounds exhibit dual relaxation pathways that may originate from the single ion behavior of individual Dy(III) ions and the coupling between Dy(III) and Co(II)/Ni(II) ions, respectively, which can be taken as the feature of 3d-4f SMMs. The Ueff for 1 of 127 K is a relatively high value among the reported 3d-4f SMMs. The results demonstrate that the magnetic coupling between 3d and 4f ions is crucial to optimize SMM parameters. The synthetic approach illustrated in this work represents an efficient route to design nd-4f based SMMs via incorporating suitable paramagnetic 3d and even 4d and 5d ions into the d-f system.
报道了四个相关的异金属配合物[Dy(III)2Co(II)(C7H5O2)8]·6H2O(1)、[Dy(III)2Ni(II)(C7H5O2)8]·(C7H6O2)2(2)、Tb(III)2Co(II)(C7H5O2)8(3)和 Dy(III)2Cd(II)(C7H5O2)8(4)的合成、结构表征和磁性。每个配合物都具有金属离子的完美线性排列,两个末端的 Ln(III)(Ln(III)=Dy(III), Tb(III))离子和一个中心的 M(II)(M(II)=Co(II), Ni(II), Cd(II))离子。通过直流(dc)磁化率测量发现,1-3 显示出自旋载体之间明显的磁相互作用。交流(ac)磁化率测量表明,配合物 1-4 均表现出单分子磁体(SMM)行为,而将抗磁性的 Cd(II)取代为顺磁性离子,由于 3d 和 4f 离子之间的磁相互作用,导致弛豫显著减慢,从而使配合物 1 和 2 的弛豫势垒更高。此外,Dy2Co 和 Dy2Ni 化合物都表现出双弛豫途径,这可能源于单个 Dy(III)离子的单离子行为和 Dy(III)和 Co(II)/Ni(II)离子之间的耦合,这可以作为 3d-4f SMM 的特征。1 的 Ueff 值为 127 K,在报道的 3d-4f SMM 中是一个相对较高的值。结果表明,3d 和 4f 离子之间的磁耦合对于优化 SMM 参数至关重要。本工作中所示的合成方法代表了通过将合适的顺磁性 3d 甚至 4d 和 5d 离子引入 d-f 系统来设计基于 nd-4f 的 SMM 的有效途径。