Issue 37, 2023

Atom-economic access to cationic magnesium complexes

Abstract

Cationic alkaline-earth complexes attract interest for their enhanced Lewis acidity and reactivity compared with their neutral counterparts. Synthetic protocols to these complexes generally utilize expensive specialized reagents in reactions generating multiple by-products. We have studied a simple ligand transfer approach to these complexes using (NacNac)MgR and ER3 (NacNac = β-diketiminate anion; E = group 13 element; R = aryl/amido anion) which demonstrates high atom economy, opening up the ability to target these species in a more sustainable manner. The success of this methodology is dependent on the identity of the group 13 element with the heavier elements facilitating faster ligand exchange. Furthermore, while this reaction is successful with aromatic ligands such as phenyl and pyrrolyl, the secondary amide piperidide (pip) fails to transfer, which we attribute to the stronger 3-centre-4-electron dimerization interaction of Al2(pip)6.

Graphical abstract: Atom-economic access to cationic magnesium complexes

Supplementary files

Article information

Article type
Paper
Submitted
16 Aug 2023
Accepted
31 Aug 2023
First published
01 Sep 2023
This article is Open Access
Creative Commons BY-NC license

Dalton Trans., 2023,52, 13332-13338

Atom-economic access to cationic magnesium complexes

E. V. Brouillet, S. A. Brown, A. R. Kennedy, A. Rae, H. P. Walton and S. D. Robertson, Dalton Trans., 2023, 52, 13332 DOI: 10.1039/D3DT02669H

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