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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Spin-state splittings of iron(II) complexes with trispyrazolyl ligands
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Spin-state splittings of iron(II) complexes with trispyrazolyl ligands

机译:铁(II)与三吡唑基配体的自旋态分裂

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We report a computational study at the OPBE/TZP level on the chemical bonding and spin ground-states of mono-nuclear iron(H) complexes with trispyrazolylborate and trispyrazolylmethane ligands. We are in particular interested in how substitution patterns on the pyrazolyl-rings influence the spin-state splittings, and how they can be rationalized in terms of electronic and steric effects. One of the main observations of this study is the large similarity of the covalent metal-ligand interactions for both the borate and methane ligands. Furthermore, we find that the spin-state preference of an individual transition-metal (TM) complex does not always concur with that of an ensemble of TM-complexes in the solid-state. Finally, although the presence of methyl groups at the 3-position of the pyrazolyl groups leads to ligand-ligand repulsion, it is actually the loss of metal-ligand bonding interactions that is mainly responsible for shifts in spin-state preferences.
机译:我们报告了在OPBE / TZP水平上的化学结合和具有三吡唑基硼酸酯和三吡唑基甲烷配体的单核铁(H)配合物的自旋基态的计算研究。我们特别感兴趣的是吡唑基环上的取代模式如何影响自旋态分裂,以及如何根据电子和空间效应使它们合理化。这项研究的主要观察之一是硼酸盐和甲烷配体的共价金属-配体相互作用的巨大相似性。此外,我们发现单个过渡金属(TM)配合物的自旋态偏爱并不总是与固态的TM复合物的整体喜好一致。最后,尽管在吡唑基的3-位存在甲基导致配体-配体排斥,但实际上是金属-配体键合相互作用的丧失主要是自旋态偏好的改变所致。

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