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3D {[M(II)(吡唑)4]2[Nb(IV)(CN)8].4H2O}n (M = Mn、Fe、Co、Ni) 分子磁体中磁相互作用的本质。

Nature of magnetic interactions in 3D {[M(II)(pyrazole)4]2[Nb(IV)(CN)8].4H2O}n (M = Mn, Fe, Co, Ni) molecular magnets.

机构信息

Faculty of Chemistry, Jagiellonian University, Ingardena 3, 30-060 Kraków, Poland.

出版信息

Inorg Chem. 2010 Aug 16;49(16):7565-76. doi: 10.1021/ic100937h.

Abstract

The self-assembly of Nb(IV)(CN)(8) with different 3d metal centers in an aqueous solution and an excess of pyrazole resulted in the formation of four 3D isostructural compounds {M(II)(pyrazole)(4)[Nb(IV)(CN)(8)].4H(2)O}(n), where M(II) = Mn, Fe, Co, and Ni for 1-4, respectively. All four assemblies crystallize in the same I4(1)/a space group and show identical cyanido-bridged structures decorated with pyrazole molecules coordinated to M(II) centers. All four compounds show also long-range magnetic ordering below 24, 8, 6, and 13 K, respectively. A thorough analysis of the structural and magnetic data utilizing the molecular field model has allowed for an estimation of the values of coupling constants J(M-Nb) attributed to the one type of M(II)-NC-Nb(IV) linkage existing in 1-4. The J(M-Nb) values increase monotonically from -6.8 for 1 through -3.1 for 2 and +3.5 for 3, to +8.1 cm(-1) for 4 and are strongly correlated with the number of unpaired electrons on the M(II) metal center. Average orbital contributions to the total exchange coupling constants J(M-Nb) have also been identified and calculated: antiferromagnetic J(AF) = -21.6 cm(-1) originating from the d(xy), d(xz), and d(yz) orbitals of M(II) and ferromagnetic J(F) = +15.4 cm(-1) originating from d(z(2)) and d(x(2)-y(2)) orbitals of M(II). Antiferromagnetic interaction is successively weakened in the 1-4 row with each additional electron on the t(2g) level, which results in a change of the sign of J(M-Nb) and the nature of long-range magnetic ordering from ferrimagnetic in 1 and 2 to ferromagnetic in 3 and 4.

摘要

在水溶液和过量吡唑的存在下,Nb(IV)(CN)(8)与不同的 3d 金属中心自组装,形成了四个 3D 等结构的化合物{M(II)(吡唑)(4)[Nb(IV)(CN)(8)].4H(2)O}(n),其中 M(II) = Mn、Fe、Co 和 Ni 分别对应于 1-4。所有四个组装体均结晶在相同的 I4(1)/a 空间群中,并显示出相同的氰基桥接结构,由配位到 M(II)中心的吡唑分子装饰。所有四个化合物在 24、8、6 和 13 K 以下也表现出长程磁有序。对结构和磁性数据的深入分析利用分子场模型,估算了存在于 1-4 中的一种类型的 M(II)-NC-Nb(IV)键的耦合常数 J(M-Nb)的值。J(M-Nb)值从 1 的-6.8 单调增加到 2 的-3.1 和 3 的+3.5,再到 4 的+8.1 cm(-1),并与 M(II)金属中心上未成对电子的数量强烈相关。还确定并计算了平均轨道对总交换耦合常数 J(M-Nb)的贡献:来自 M(II)的 d(xy)、d(xz)和 d(yz)轨道的反铁磁 J(AF) = -21.6 cm(-1)和来自 M(II)的 d(z(2))和 d(x(2)-y(2))轨道的铁磁 J(F) = +15.4 cm(-1)。随着 t(2g)能级上的额外电子的增加,1-4 行中的反铁磁相互作用逐渐减弱,这导致 J(M-Nb)的符号和长程磁有序的性质发生变化,从 1 和 2 中的亚铁磁变为 3 和 4 中的铁磁。

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