Alkoxylation of the imine carbon atom of a Schiff-base ligand upon coordination to arene ruthenium
Author(s)
Date issued
September 9, 2018
In
Inorganica Chimica Acta
No
483
From page
93
To page
97
Reviewed by peer
1
Subjects
Arene ruthenium complexes Nucleophilic addition Schiff-base ligand Half-sandwich complexes
Abstract
The Schiff-base 5-methyl-4-{(pyridin-2-ylmethylene)amino}-4H-1,2,4-triazole-3-thiol (L-H) reacts in alcoholic solution (methanol, ethanol, isopropanol) at room temperature with the dinuclear precursor [(η6-MeC6H4Pri) RuCl2]2 to give a series of neutral complexes of the general formula (η6-MeC6H4Pri)Ru(L-OR) (R=Me, 1; R=Et, 2;R=Pri, 3). In these complexes, the Schiff-base ligand coordinates to the arene ruthenium unit in a S,N,N-tridentate fashion and concomitantly to the coordination process a nucleophilic addition of the alcohol occurs on the imine carbon of L, thus forming the corresponding L-OR ligand. The molecular structure of 3, solved by single-crystal X-ray analysis, shows a piano-stool arrangement with the p-cymene, the Sthiolato, the Nimine and Npyridyl surrounding the chiral-at-metal ruthenium center and an OPri group attached to the imine carbon. The insertion of an alkoxy group on the carbon atom reduces the imine function and also introduces chirality on the ligand, thus generating a second chiral center and potentially diastereoisomeric complexes. However, steric hindrance on the ligand forces the formation of only one pair of enantiomers
Publication type
journal article
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