Department of Chemistry, Faculty of Science, Kumamoto University, Kumamoto 860-8555, Japan.
Inorg Chem. 2013 May 20;52(10):6160-78. doi: 10.1021/ic400594u. Epub 2013 May 6.
A series of 3d-4f binuclear complexes, [M(3-MeOsaltn)(MeOH)x(ac)Ln(hfac)2] (x = 0 for M = Cu(II), Zn(II); x = 1 for M = Co(II), Ni(II); Ln = Gd(III), Tb(III), Dy(III), La(III)), have been synthesized and characterized, where 3-MeOsaltn, ac, and hfac denote N,N'-bis(3-methoxy-2-oxybenzylidene)-1,3-propanediaminato, acetato, and hexafluoroacetylacetonato, respectively. The X-ray analyses demonstrated that all the complexes have an acetato- and diphenolato-bridged M(II)-Ln(III) binuclear structure. The Cu(II)-Ln(III) and Zn(II)-Ln(III) complexes are crystallized in an isomorphous triclinic space group P1, where the Cu(II) or Zn(II) ion has square pyramidal coordination geometry with N2O2 donor atoms of 3-MeOsaltn at the equatorial coordination sites and one oxygen atom of the bridging acetato ion at the axial site. The Co(II)-Ln(III) and Ni(II)-Ln(III) complexes are crystallized in an isomorphous monoclinic space group P2(1)/c, where the Co(II) or Ni(II) ion at the high-spin state has an octahedral coordination environment with N2O2 donor atoms of 3-MeOsaltn at the equatorial sites, and one oxygen atom of the bridged acetato and a methanol oxygen atom at the two axial sites. Each Ln(III) ion for all the complexes is coordinated by four oxygen atoms of two phenolato and two methoxy oxygen atoms of "ligand-complex" M(3-MeOsaltn), four oxygen atoms of two hfac(-), and one oxygen atom of the bridging acetato ion; thus, the coordination number is nine. The temperature dependent magnetic susceptibilities from 1.9 to 300 K and the field-dependent magnetization up to 5 T at 1.9 K were measured. Due to the important orbital contributions of the Ln(III) (Tb(III), Dy(III)) and to a lesser extent the M(II) (Ni(II), Co(II)) components, the magnetic interaction between M(II) and Ln(III) ions were investigated by an empirical approach based on a comparison of the magnetic properties of the M(II)-Ln(III), Zn(II)-Ln(III), and M(II)-La(III) complexes. The differences of χ(M)T and M(H) values for the M(II)-Ln(III), Zn(II)-Ln(III) and those for the M(II)-La(III) complexes, that is, Δ(T) = (χ(M)T)(MLn) - (χ(M)T)(ZnLn) - (χ(M)T)(MLa) = J(MLn)(T) and Δ(H) = M(MLn)(H) - M(ZnLn)(H) - M(MLa)(H) = J(MLn)(H), give the information of 3d-4f magnetic interaction. The magnetic interactions are ferromagnetic if M(II) = (Cu(II), Ni(II), and Co(II)) and Ln = (Gd(III), Tb(III), and Dy(III)). The magnitudes of the ferromagnetic interaction, J(MLn)(T) and J(MLn)(H), are in the order Cu(II)-Gd(III) > Cu(II)-Dy(III) > Cu(II)-Tb(III), while those are in the order of M(II)-Gd(III) ≈ M(II)-Tb(III) > M(II)-Dy(III) for M(II) = Ni(II) and Co(II). Alternating current (ac) susceptibility measurements demonstrated that the Ni(II)-Tb(III) and Co(II)-Tb(III) complexes showed out-of-phase signal with frequency-dependence and the Ni(II)-Dy(III) and Co(II)-Dy(III) complexes showed small frequency-dependence. The energy barrier for the spin flipping was estimated from the Arrhenius plot to be 14.9(6) and 17.0(4) K for the Ni(II)-Tb(III) and Co(II)-Tb(III) complexes, respectively, under a dc bias field of 1000 Oe.
一系列的 3d-4f 双核配合物,[M(3-MeOsaltn)(MeOH)x(ac)Ln(hfac)2](x = 0 对于 M = Cu(II), Zn(II);x = 1 对于 M = Co(II), Ni(II);Ln = Gd(III), Tb(III), Dy(III), La(III)),已经被合成并进行了表征,其中 3-MeOsaltn、ac 和 hfac 分别表示 N,N'-双(3-甲氧基-2-氧代苄基)-1,3-丙二胺、乙酰丙酮和六氟乙酰丙酮酸盐。X 射线分析表明,所有配合物都具有乙酰丙酮桥联和二苯酚桥联的 M(II)-Ln(III)双核结构。Cu(II)-Ln(III)和 Zn(II)-Ln(III)配合物在等晶单相的 P1 空间群中结晶,其中 Cu(II)或 Zn(II)离子具有四面体形配位几何形状,N2O2 供体原子来自 3-MeOsaltn,位于赤道配位位置,一个桥接的乙酰丙酮离子的氧原子位于轴向位置。Co(II)-Ln(III)和 Ni(II)-Ln(III)配合物在等晶单相的 P2(1)/c 空间群中结晶,其中 Co(II)或 Ni(II)离子处于高自旋态,具有八面体配位环境,N2O2 供体原子来自 3-MeOsaltn,位于赤道位置,桥接的乙酰丙酮和甲醇的一个氧原子位于两个轴向位置。所有配合物中的每个 Ln(III)离子都由来自“配体-配合物”M(3-MeOsaltn)的两个苯酚基和两个甲氧基氧原子、两个 hfac(-)的四个氧原子以及桥接的乙酰丙酮离子的一个氧原子配位;因此,配位数为九。在 1.9 到 300 K 的温度依赖性磁感性和在 1.9 K 下高达 5 T 的场依赖性磁化率进行了测量。由于 Ln(III)(Tb(III), Dy(III))和在较小程度上 M(II)(Ni(II), Co(II))成分的重要轨道贡献,通过比较 M(II)-Ln(III)、Zn(II)-Ln(III)和 M(II)-La(III)配合物的磁性性质,基于经验方法研究了 M(II)和 Ln(III)离子之间的磁相互作用。对于 M(II)-Ln(III)、Zn(II)-Ln(III)和 M(II)-La(III)配合物,χ(M)T 和 M(H) 值的差异,即 Δ(T) = (χ(M)T)(MLn) - (χ(M)T)(ZnLn) - (χ(M)T)(MLa) = J(MLn)(T) 和 Δ(H) = M(MLn)(H) - M(ZnLn)(H) - M(MLa)(H) = J(MLn)(H),提供了 3d-4f 磁相互作用的信息。如果 M(II) = (Cu(II), Ni(II), 和 Co(II)) 和 Ln = (Gd(III), Tb(III), 和 Dy(III)),则磁相互作用是铁磁性的。铁磁性相互作用的大小,J(MLn)(T)和 J(MLn)(H),在 M(II) = Cu(II)时为 Cu(II)-Gd(III) > Cu(II)-Dy(III) > Cu(II)-Tb(III),而在 M(II) = Ni(II)和 Co(II)时为 M(II)-Gd(III) ≈ M(II)-Tb(III) > M(II)-Dy(III)。交流(ac)磁化率测量表明,Ni(II)-Tb(III)和 Co(II)-Tb(III)配合物表现出与频率相关的反相信号,而 Ni(II)-Dy(III)和 Co(II)-Dy(III)配合物表现出较小的频率依赖性。从 Arrhenius 图估计自旋翻转的能垒,在直流偏置场为 1000 Oe 时,Ni(II)-Tb(III)和 Co(II)-Tb(III)配合物分别为 14.9(6)和 17.0(4)K。