Department of Chemistry, Faculty of Science, Okayama University, Tsushima-naka 3-1-1, Okayama 700-8530, Japan.
Inorg Chem. 2010 Oct 18;49(20):9125-35. doi: 10.1021/ic100460w.
Trinuclear linear 3d-4f-3d complexes (3d = Mn(II), Fe(II), Co(II), Zn(II) and 4f = La(III), Gd(III), Tb(III), Dy(III)) were prepared by using a tripodal nonadentate Schiff base ligand, N,N',N''-tris(2-hydroxy-3-methoxybenzilidene)-2-(aminomethyl)-2-methyl-1,3-propanediamine. The structural determinations showed that in these complexes two distorted trigonal prismatic transition metal complexes of identical chirality are assembled through 4f cations. The Mn and Fe entities crystallize in the chiral space group P2(1)2(1)2(1) as pure enantiomers; the cobalt complexes exhibit a less straightforward behavior. All Mn, Fe, and Co complexes experience M(II)-Ln(III) ferromagnetic interactions. The Mn-Gd interaction is weak (0.08 cm(-1)) in comparison to the Fe-Gd (0.69 cm(-1)) and Co-Gd (0.52 cm(-1)) ones while the single ion zero field splitting (ZFS) term D is larger for the Fe complexes (5.7 cm(-1)) than for the cobalt ones. The cobalt complexes behave as single-molecules magnets (SMMs) with large magnetization hysteresis loops, as a consequence of the particularly slow magnetic relaxation characterizing these trinuclear molecules. Such large hysteresis loops, which are observed for the first time in Co-Ln complexes, confirm that quantum tunnelling of the magnetization does not operate in the Co-Gd-Co complex.
三核线性 3d-4f-3d 配合物(3d = Mn(II)、Fe(II)、Co(II)、Zn(II)和 4f = La(III)、Gd(III)、Tb(III)、Dy(III))是通过使用三齿非齿状席夫碱配体 N,N',N''-三(2-羟基-3-甲氧基苯甲酰基)-2-(氨甲基)-2-甲基-1,3-丙二胺制备的。结构测定表明,在这些配合物中,两个具有相同手性的扭曲三角棱柱过渡金属配合物通过 4f 阳离子组装在一起。Mn 和 Fe 实体以纯对映异构体的形式在手性空间群 P2(1)2(1)2(1)中结晶;钴配合物表现出不太直接的行为。所有 Mn、Fe 和 Co 配合物都经历了 M(II)-Ln(III)铁磁相互作用。与 Fe-Gd(0.69 cm(-1))和 Co-Gd(0.52 cm(-1))相比,Mn-Gd 相互作用较弱(0.08 cm(-1)),而单离子零场分裂(ZFS)项 D 对于 Fe 配合物(5.7 cm(-1))大于钴配合物。钴配合物表现为单分子磁体(SMM),具有较大的磁化滞后回线,这是由于这些三核分子的特征磁弛豫特别缓慢。在 Co-Ln 配合物中首次观察到这种大的滞后回线,这证实了量子隧穿磁化在 Co-Gd-Co 配合物中不起作用。