Structure and mechanism in aerobic alkene epoxidations promoted by ruthenium complexes of bis(dihydrooxazole) ligands
Abstract
Reaction of [RuCl2(NCMe)2(cod)] with bis(dihydrooxazoles) gave [RuCl2(cod){(S,S)-R12C-([graphic omitted])2}](cod = cycloocta-1,5-diene; R1= H, R2= CH2Ph or Pri; R1= Me, R2= Pri). The benzyl complex has been crystallographically characterised. The IR spectra of the complex of the hexamethyl-substituted compound suggest that the ligand is relatively distorted and this is borne out by crystallographic comparison of the model complexes cis-[W(CO)4{(S,S)-R2C([graphic omitted])2}](R = H or Me). Mechanistic studies of the epoxidation of styrene and stilbenes in the presence of isobutyraldehyde and molecular oxygen using the ruthenium complexes as catalysts in the presence and absence of 4-tert-butylcatechol as a radical trap revealed that the metals act as promoters for the production of PriCO3H and that this carries out the epoxidation, either directly or by formation of oxo-ruthenium species.