Max-Planck-Institut für Bioanorganische Chemie, Stiftstrasse 34-36, D-45470 Mülheim an der Ruhr, Germany.
Inorg Chem. 2009 Jul 20;48(14):6781-93. doi: 10.1021/ic9007608.
Syntheses, crystal structures, and magnetic properties are reported for a tetrametallic (complex 1), a nonametallic (complex 2), and two hexametallic (complexes 3 and 4) nickel(II) clusters, namely, [Ni(4)(HL(1))(2)(mu-OAc)(2)(MeOH)] (1), Ni(9)(L(2))(10)(mu(3)-OH) (2) (mu-OH) (2) (mu-OH (2))(2)(OH(2))(6) (4) (2), Ni(6)(L(2))(9)(L(2)H)(MeOH)(H(2)O)(2)(3) (3), and Ni(6)(L(3))(3)(mu(3)-O)(2)(2) (4), where H(4)L(1) represents N,N'-dimethyl-N,N'-ethylene-bis(5-bromo-3-formyloxime-2-hydroxybenzylamine); HL(2), 1-methylimidazole-2-aldoxime; and H(2)L(3), N,N'-bis(2,3-butanedionemonoxime-2-ene)-3(aminomethyl)benzylamine. The structure of 1 can be considered as two face-sharing bioctahedral units of [Ni(2)(mu-O(phen))(2)(mu-OAc)] bridged by a two-atom (-N-O-) oximate linker. The Ni(II)...Ni(II) distances of av. 2.935 A preclude metal-metal bonding, although they are remarkably short. Variable-temperature magnetic susceptibility data are fitted to obtain the parameters J (1) = +8.0 cm(-1), J(2) = -16.0 cm (-1), and g = 2.19 (H= -2 JS(i) x S(j)). The ferromagnetic coupling J (1) operates between the nickel(II) centers in the face-sharing bioctahedral units, whereas J(2) represents the antiferromagnetic interactions mediated by a single (-N-O-) bridge separating the two nickel centers at a distance of approximately 4.71 A. A rationale for the disparate nature of interactions based on a comparison with those reported in the literature is forwarded. The structure of 2 consists of two [Ni(4)(L(2))(5)] units linked covalently to a central nickel atom by four oximate and two hydroxy oxygen atoms, resulting in a central octahedral NiO(6) core and thus yielding the nonanuclear nickel(II) cluster. The magnetic data were analyzed by a "two-J" model, yielding pairwise antiferromagnetic exchange interactions, J(1) = -24.0 cm (-1) and J(2) = -5.8 cm (-1), between the nickel centers. The spin ground state of S(t) = 1.0 has been confirmed by magnetization measurements (variable-temperature, variable-field) at different fields. The structure of 3 contains six nickel(II) centers, each of which is six-coordinated but with different coordination environments: NiN(6), NiO(6), NiN(3)O(3)(2x), NiN(4)O(2), and NiNO(5). The ground-state spin has been observed to be S(t) = 1.0 with the axial zero-field splitting parameter D = -7.2 cm(-1). Complex 4 is a rare example of dimeric Ni(3)(mu(3)-O) units, in which each of six nickel(II) centers is in square-planar geometry with low-spin d(8) Ni(II) centers, thus rendering diamagnetism to complex 4.
合成、晶体结构和磁性性质报告了四金属(配合物 1)、非金属(配合物 2)和两个六金属(配合物 3 和 4)镍(II)簇,即[Ni(4)(HL(1))(2)(mu-OAc)(2)(MeOH)](1),Ni(9)(L(2))(10)(mu(3)-OH)(2)(mu-OH)(2)(mu-OH(2))(2)(OH(2))(6)(4),Ni(6)(L(2))(9)(L(2)H)(MeOH)(H(2)O)(2)(3),和Ni(6)(L(3))(3)(mu(3)-O)(2)(2),其中 H(4)L(1)表示 N,N'-二甲基-N,N'-乙撑-双(5-溴-3-甲酰氧基-2-羟基亚苄基胺);HL(2),1-甲基咪唑-2-醛肟;和 H(2)L(3),N,N'-双(2,3-丁二酮单肟-2-烯)-3(氨甲基)苄基胺。1 的结构可以被认为是两个面共享的[Ni(2)(mu-O(phen))(2)(mu-OAc)]通过两个原子(-N-O-)肟桥连接的生物八面体单元。Ni(II)...Ni(II)距离的平均值为 2.935 A 排除了金属-金属键合,尽管它们非常短。变温磁化率数据拟合以获得参数 J(1) = +8.0 cm(-1),J(2) = -16.0 cm(-1)和 g = 2.19(H= -2 JS(i) x S(j))。铁磁耦合 J(1)在面共享生物八面体单元中的镍(II)中心之间起作用,而 J(2)代表通过分离两个镍中心的单个(-N-O-)桥介导的反铁磁相互作用,两个镍中心之间的距离约为 4.71 A。提出了基于与文献中报道的相互作用进行比较的理由来解释相互作用的不同性质。2 的结构由两个[Ni(4)(L(2))(5)]单元通过四个肟和两个羟氧原子共价连接到中心镍原子上,从而产生中心八面体 NiO(6)核,从而产生九核镍(II)簇。磁性数据通过“两个 J”模型进行分析,在镍中心之间产生了成对的反铁磁交换相互作用,J(1) = -24.0 cm(-1)和 J(2) = -5.8 cm(-1)。通过在不同磁场下进行磁化测量(变温、变场)证实了自旋基态 S(t) = 1.0。3 的结构包含六个镍(II)中心,每个镍(II)中心都是六配位的,但具有不同的配位环境:NiN(6)、NiO(6)、NiN(3)O(3)(2x)、NiN(4)O(2)和 NiNO(5)。观察到基态自旋为 S(t) = 1.0,轴向零场分裂参数 D = -7.2 cm(-1)。4 是二聚Ni(3)(mu(3)-O)单元的罕见例子,其中六个镍(II)中心中的每一个都处于正方形平面几何形状,具有低自旋 d(8)镍(II)中心,从而使 4 呈现抗磁性。