首页> 外文期刊>Journal of the American Chemical Society >A Family of Mixed-Metal Cyanide Cubes with Alternating Octahedral and Tetrahedral Corners Exhibiting a Variety of Magnetic Behaviors Including Single Molecule Magnetism
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A Family of Mixed-Metal Cyanide Cubes with Alternating Octahedral and Tetrahedral Corners Exhibiting a Variety of Magnetic Behaviors Including Single Molecule Magnetism

机译:具有交替的八面体和四面体角的混合金属氰化物立方族,表现出包括单分子磁性在内的多种磁性行为

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A series of structurally related pseudocubic metal cyanide clusters of Re(Ⅱ) and 3d metal ions [{MX}_4{Re(triphos)(CN)_3}_4] (M = Mn, Fe, Co, Ni, Zn; X = Cl, I, -OCH_3) have been prepared, and their magnetic and electrochemical properties have been probed to evaluate the effect of changing the identity of the 3d metal ion. Electrochemistry of the clusters reveals several rhenium-based oxidation and reduction processes, some of which result in cluster fragmentation. The richest electrochemistry was observed for the iron congener, which exists as the Re(Ⅰ)/Fe(Ⅲ) cluster at the resting potential and exhibits six clear one-electron reversible redox couples and two, closely spaced one-electron quasi-reversible processes. The [{Mn~ⅡCl}_4{Re~Ⅱ(triphos)(CN)_3}_4] complex exhibits single molecule magnetism with a fast tunneling relaxation process observed at H = 0 determined by micro-SQUID magnetization measurements. A comparative evaluation of the magnetic properties across the series reveals that the compounds exhibit antiferromagnetic coupling between the metal ions, except for [{Ni~ⅡCl}_4{Re~Ⅱ(triphos)(CN)_3}_4] that shows ferromagnetic behavior. Despite the large ground-state spin value of [{Ni~ⅡCl}_4{Re~Ⅱ(triphos)(CN)_3}_4] (S = 6), only manganese congeners exhibit SMM behavior to 1.8 K.
机译:Re(Ⅱ)和3d金属离子[{MX} _4 {Re(triphos)(CN)_3} _4]的一系列结构相关的伪立方金属氰化物簇(M = Mn,Fe,Co,Ni,Zn; X =制备了Cl,I,-OCH_3),并探究了它们的磁性和电化学性质,以评估改变3d金属离子身份的影响。团簇的电化学揭示了几种基于-的氧化和还原过程,其中一些导致团簇破碎。观察到铁同类物的电化学最丰富,在静止电势下以Re(Ⅰ)/ Fe(Ⅲ)团簇形式存在,并表现出六个清晰的单电子可逆氧化还原对和两个紧密排列的单电子准可逆过程。 。 [{Mn〜ⅡCl} _4 {Re〜Ⅱ(triphos)(CN)_3} _4]配合物表现出单分子磁性,并通过micro-SQUID磁化强度测量在H = 0时观察到快速隧穿弛豫过程。对整个系列的磁性能的比较评估表明,该化合物在金属离子之间表现出反铁磁耦合,除了显示出铁磁行为的[{Ni〜ⅡCl} _4 {Re〜Ⅱ(triphos)(CN)_3} _4]外。尽管[{Ni〜ⅡCl} _4 {Re〜Ⅱ(triphos)(CN)_3} _4]具有较大的基态自旋值(S = 6),但只有锰同类物在1.8 K时表现出SMM行为。

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