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含有两个氮供体配体的弯曲镧系(III)配合物的电子结构

Electronic structures of bent lanthanide(III) complexes with two N-donor ligands.

作者信息

Nicholas Hannah M, Vonci Michele, Goodwin Conrad A P, Loo Song Wei, Murphy Siobhan R, Cassim Daniel, Winpenny Richard E P, McInnes Eric J L, Chilton Nicholas F, Mills David P

机构信息

Department of Chemistry , School of Natural Sciences , The University of Manchester , Oxford Road , Manchester , M13 9PL , UK . Email:

出版信息

Chem Sci. 2019 Sep 18;10(45):10493-10502. doi: 10.1039/c9sc03431e. eCollection 2019 Dec 7.

Abstract

Low coordinate metal complexes can exhibit superlative physicochemical properties, but this chemistry is challenging for the lanthanides (Ln) due to their tendency to maximize electrostatic contacts in predominantly ionic bonding regimes. Although a handful of Ln complexes with only two monodentate ligands have been isolated, examples in the most common +3 oxidation state have remained elusive due to the greater electrostatic forces of Ln ions. Here, we report bent Ln complexes with two bis(silyl)amide ligands; in the solid state the Yb analogue exhibits a crystal field similar to its three coordinate precursor rather than that expected for an axial system. This unanticipated finding is in opposition to the predicted electronic structure for two-coordinate systems, indicating that geometries can be more important than the Ln ion identity for dictating the magnetic ground states of low coordinate complexes; this is crucial transferable information for the construction of systems with enhanced magnetic properties.

摘要

低配位金属配合物可展现出卓越的物理化学性质,但由于镧系元素(Ln)倾向于在主要为离子键的体系中最大化静电接触,这种化学性质对于镧系元素而言颇具挑战性。尽管已分离出少数仅含两个单齿配体的Ln配合物,但由于Ln离子更强的静电力,处于最常见的 +3 氧化态的此类配合物实例仍难以获得。在此,我们报道了含有两个双(硅基)酰胺配体的弯曲型Ln配合物;在固态下,Yb类似物展现出与其三配位前体相似的晶体场,而非轴向体系所预期的晶体场。这一意外发现与两配位体系的预测电子结构相悖,表明对于决定低配位配合物的磁基态而言,几何构型可能比Ln离子身份更为重要;这对于构建具有增强磁性的体系而言是至关重要的可转移信息。

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