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A Mixed-Valence Tetra-Nuclear Nickel Dithiolene Complex: Synthesis, Crystal Structure, and the Lability of Its Nickel Sulfur Bonds

机译:一种混合效价四核镍二硫胺配合物:合成,晶体结构和镍硫键的耐韧性

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摘要

In this study, by employing a common synthetic protocol, an unusual and unexpected tetra-nuclear nickel dithiolene complex was obtained. The synthesis of the [Ni4(ecpdt)6]2− dianion (ecpdt = (Z)-3-ethoxy-3-oxo-1-phenylprop-1-ene-1,2-bis-thiolate) with two K+ as counter ions was then intentionally reproduced. The formation of this specific complex is attributed to the distinct dithiolene precursor used and the combination with the then coordinated counter ion in the molecular solid-state structure, as determined by X-ray diffraction. K2[Ni4(ecpdt)6] was further characterized by ESI-MS, FT-IR, UV-Vis, and cyclic voltammetry. The tetra-nuclear complex was found to have an uncommon geometry arising from the combination of four nickel centers and six dithiolene ligands. In the center of the arrangement, suspiciously long Ni–S distances were found, suggesting that the tetrameric structure can be easily split into two identical dimeric fragments or two distinct groups of monomeric fragments, for instance, upon dissolving. A proposed variable magnetism in the solid-state and in solution due to the postulated dissociation was confirmed. The Ni–S bonds of the “inner” and “outer” nickel centers differed concurrently with their coordination geometries. This observation also correlates with the fact that the complex bears two anionic charges requiring the four nickel centers to be present in two distinct oxidation states (2 × +2 and 2 × +3), i.e., to be hetero-valent. The different coordination geometries observed, together with the magnetic investigation, allowed the square planar “outer” geometry to be assigned to d8 centers, i.e., Ni2+, while the Ni3+ centers (d7) were in a square pyramidal geometry with longer Ni–S distances due to the increased number of donor atoms and interactions.
机译:在本研究中,通过采用普通的合成方案,获得了不寻常和意外的四核镍二硫胺络合物。 [Ni4(ECPDT)6] 2-诊断(ECPDT =(Z)-3-乙氧基-3-氧代1-苯基吡啶-1-ENE-1,2-双硫醇酸酯的合成,为2 k +作为计数器然后有意再现离子。该特异性复合物的形成归因于所用的不同的二硫代乙二醇前体,并且通过X射线衍射测定的分子固态结构中与当时配位的反离子的组合。 K2 [Ni4(ECPDT)6]进一步表征ESI-MS,FT-IR,UV-Vis和循环伏安法。发现四核复合物具有由四个镍中心和六种二硫代乙二醇烯配体的组合产生的罕见几何形状。在该安排的中心,发现可疑的长NI-S距离,表明四聚体结构可以容易地分成两个相同的二聚体片段或两种不同的单体片段,例如溶解时。确认了固态和溶液中的提出的可变磁性。 “内部”和“外部”镍中心的NI-S键与其协调几何形状同时不同。这一观察结果也与相关联的事实,需要四个镍中心复杂带有两个阴离子电荷存在于两个不同的氧化态(2×2和2×3),即,是杂价。观察到不同的协调几何形状与磁力调查一起允许平面平面“外部”几何形状分配给D8中心,即Ni2 +,而Ni3 +中心(D7)是具有更长的Ni-S距离的方形金字塔形几何形状由于供体原子和相互作用增加。

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