Abstract
Kinetic and mechanistic studies of the oxidation of olefins, sulfides, and sulfoxides by [RuIV(bpy)2(O)-(PR3)](ClO4)2(bpy = 2, 2′-bipyridine; R = ethyl or phenyl) complexes have been conducted in both methylene chloride and acetonitrile. In all cases, the rate law shows a first-order dependence on both the concentration of (oxo)ruthenium(IV) species and the target substrate. In addition, product distributions of substrate oxidation exhibit a strong dependence on both the particular phosphine ligand and the solvent utilized in the experiment. On the basis of labelling experiments and kinetic evidence, a mechanism is proposed involving a two-electron, oxygen atom insertion into the target substrate. Notably, an (oxidized substrate)ruthenium(II) complex has been isolated and characterized for the oxidation of styrene by the (oxo)(triethylphosphine)ruthenium(IV) complex, where a cyclic voltammogram of this complex displays one quasi-reversible Ru(III)/Ru(II) couple with an E1/2= 1.24 V vs SSCE. Kinetic analysis of styrene oxidation indicates that the formation of benzaldehyde from styrene does not occur simply by two sequential two-electron steps. In this regard, alternative mechanisms are discussed.
| Original language | English |
|---|---|
| Pages (from-to) | 1-16 |
| Number of pages | 16 |
| Journal | Journal of Coordination Chemistry |
| Volume | 19 |
| Issue number | 1-3 |
| DOIs | |
| State | Published - Dec 1 1988 |
Keywords
- alkenes
- oxidation
- Oxo(phosphine)ruthenium(IV)
- oxygen atom transfer
- redox
- sulfides
- sulfoxides
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