Issue 46, 2021

Direct metal–carbon bonding in symmetric bis(C–H) agostic nickel(i) complexes

Abstract

Agostic interactions are examples of σ-type interactions, typically resulting from interactions between C–H σ-bonds with empty transition metal d orbitals. Such interactions often reflect the first step in transition metal-catalysed C–H activation processes and thus are of critical importance in understanding and controlling σ bond activation chemistries. Herein, we report on the unusual electronic structure of linear electron-rich d9 Ni(I) complexes with symmetric bis(C–H) agostic interactions. A combination of Ni K edge and L edge XAS with supporting TD-DFT/DFT calculations reveals an unconventional covalent agostic interaction with limited contributions from the valence Ni 3d orbitals. The agostic interaction is driven via the empty Ni 4p orbitals. The surprisingly strong Ni 4p-derived agostic interaction is dominated by σ contributions with minor π contributions. The resulting ligand–metal donation occurs directly along the C–Ni bond axis, reflecting a novel mode of bis-agostic bonding.

Graphical abstract: Direct metal–carbon bonding in symmetric bis(C–H) agostic nickel(i) complexes

Supplementary files

Article information

Article type
Edge Article
Submitted
30 Jun 2021
Accepted
29 Oct 2021
First published
05 Nov 2021
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2021,12, 15298-15307

Direct metal–carbon bonding in symmetric bis(C–H) agostic nickel(I) complexes

W. He, D. D. Beattie, H. Zhou, E. G. Bowes, L. L. Schafer, J. A. Love and P. Kennepohl, Chem. Sci., 2021, 12, 15298 DOI: 10.1039/D1SC03578A

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