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超酸性和氧化条件下Fe(CO)的溶剂依赖性反应活性

Solvent-Dependent Reactivity of Fe(CO) under Superacidic and Oxidative Conditions.

作者信息

Berg Willi R, Reimann Marc, Sievers Robin, Rupf Susanne M, Schlögl Johanna, Weisser Kilian, Krause Konstantin B, Limberg Christian, Kaupp Martin, Malischewski Moritz

机构信息

Institut für Anorganische Chemie, Freie Universität Berlin, Fabeckstraße 34-36, D-14195 Berlin, Germany.

Institut für Chemie, Technische Universität Berlin, Straße des 17. Juni 135, 10623 Berlin, Germany.

出版信息

J Am Chem Soc. 2025 Jan 29;147(4):3039-3046. doi: 10.1021/jacs.4c09595. Epub 2025 Jan 13.

Abstract

Herein, we report the solvent-dependent reactivity of Fe(CO) toward AsF in either anhydrous HF or liquid SO. The reaction of Fe(CO) with the superacid HF/AsF leads to the protonation of the iron center and allows for the first-time structural characterization of [FeH(CO)] in the solid state, representing one of the most acidic transition metal hydride complexes to ever be isolated and structurally characterized. In the aprotic but oxidation-stable solvent SO, Fe(CO) is oxidized and dimerized to [Fe(CO)], which is isoelectronic with well-known Mn(CO). [Fe(CO)] is the first structurally characterized example of a homoleptic dinuclear transition metal carbonyl cation. Together with Fe(CO) and [Fe(CO)], it is a rare example of an iron-centered triad from which the neutral, the radical cationic, and the dimerized dicationic species have been structurally and spectroscopically characterized. All characterizations are well supported by quantum chemical calculations. We also make the argument that the dimerization of [Fe(CO)] is largely dependent on the employed solvent.

摘要

在此,我们报道了Fe(CO)在无水HF或液态SO₂中与AsF₅的溶剂依赖性反应。Fe(CO)₅与超强酸HF/AsF₅反应导致铁中心质子化,并首次对固态[FeH(CO)₅]进行了结构表征,它是有史以来分离并进行结构表征的酸性最强的过渡金属氢化物配合物之一。在非质子但氧化稳定的溶剂SO₂中,Fe(CO)₅被氧化并二聚形成[Fe₂(CO)₉]²⁺,它与著名的Mn₂(CO)₁₀等电子。[Fe₂(CO)₉]²⁺是首例经结构表征的同配双核过渡金属羰基阳离子。连同Fe(CO)₅和[Fe(CO)₅]⁺一起,它是一个罕见的以铁为中心的三元组实例,其中中性、自由基阳离子和二聚双阳离子物种均已通过结构和光谱表征。所有表征均得到量子化学计算的有力支持。我们还提出,[Fe(CO)₅]⁺的二聚很大程度上取决于所使用的溶剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ded/11783529/536bc97381cd/ja4c09595_0001.jpg

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