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用配体场理论评估氨配体的π相互作用。

The π-interactions of ammonia ligands evaluated by ligand field theory.

机构信息

TU Darmstadt, Department of Chemistry, Theoretical Chemistry, Alarich-Weiss-Straße 4, 64287 Darmstadt, Germany.

出版信息

Dalton Trans. 2023 May 22;52(20):6685-6692. doi: 10.1039/d3dt00511a.

Abstract

Ammonia and amine ligands are commonly assumed to be σ-only ligands in coordination chemistry, they are not expected to interact significantly with a metal a π path. Ligand field analyses employing the Angular Overlap Model resulted in good fits to experimental data without a π parameter for ammonia ligands, thereby supporting this assumption. In this work, we challenge this assumption and suggest that it is an oversimplification. We use complete active space calculations for electronic structure analyses of copper ammine complexes that are in good agreement with the transitions observed in experimental UV-vis spectra. These findings lead to a reinterpretation of the experimental spectra that necessitates a significant π interaction of the ammonia ligands. The strength of the ammonia π interaction is evaluated by parameterizing the ligand field splittings of a series of metal hexammine complexes ([M(NH)] with M = Cr, Mn, Fe, Co, Ni, Ru, Os and = 2, 3) and selected tetrammine complexes ([M(NH)] with M = Cr, Mn, Fe, Co, Ni and = 2 or 3) with the Angular Overlap Model. The resulting π parameters show that ammonia is a π donor of similar strength as chloride.

摘要

氨和胺配体通常被认为是配位化学中的σ配体,它们预计不会与金属发生显著的π相互作用。采用角重叠模型进行的配体场分析得出了与实验数据很好吻合的结果,而无需对氨配体使用π参数,从而支持了这一假设。在这项工作中,我们挑战了这一假设,并认为这是一种过于简单的说法。我们使用完全活性空间计算方法对铜氨配合物的电子结构进行了分析,这些计算结果与实验 UV-vis 光谱中观察到的跃迁很好地吻合。这些发现导致了对实验光谱的重新解释,这需要氨配体的显著π相互作用。通过参数化一系列金属六氨配合物([M(NH)],其中 M = Cr、Mn、Fe、Co、Ni、Ru、Os 和 = 2,3)和选定的四氨配合物([M(NH)],其中 M = Cr、Mn、Fe、Co、Ni 和 = 2 或 3)的配体场分裂,评估了氨的π相互作用强度,使用角重叠模型。所得的π参数表明,氨是一种与氯离子强度相当的π供体。

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