DFT study of chromium tricarbonyl complexes of coronene and kekulene


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Resumo

A quantum chemical study of the mechanism and determination of the activation barriers of intramolecular η66-inner-ring haptotropic rearrangements (IHR), consisting in moving a chromium tricarbonyl group Cr(CO)3 from one six-membered aromatic ring to another, are carried out using the density functional theory (DFT) for the respective η6-complexes of coronene I and kekulene II. The stationary states on the potential energy surface, determining the mechanism of η66-IHR, have a lower hapticity, which is of interest for catalysis because of the possibility of coordinating an additional substrate and reagent around the transition metal during the rearrangement. The processes of η66-IHR complexes I and II occur with similar energy barriers (ΔG ≈ 20–25 kcal/mol) that are lower than the barriers (ΔG ≈ 30 kcal/mol) of similar transformations previously calculated or measured for naphthalene complexes and a number of small polyaromatic hydrocarbons.

Sobre autores

N. Zhulyaev

Department of Chemistry

Email: oprunenko@nmr.chem.msu.su
Rússia, Moscow, 119991

I. Gloriozov

Department of Chemistry

Email: oprunenko@nmr.chem.msu.su
Rússia, Moscow, 119991

Yu. Oprunenko

Department of Chemistry

Autor responsável pela correspondência
Email: oprunenko@nmr.chem.msu.su
Rússia, Moscow, 119991

J.-Y. Saillard

Institut des Sciences Chimiques de Rennes

Email: oprunenko@nmr.chem.msu.su
França, Rennes, F-35042

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