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Ruthenium-catalyzed asymmetric epoxidation of olefins using H2O2, part II: catalytic activities and mechanism
Authors:Tse Man Kin  Bhor Santosh  Klawonn Markus  Anilkumar Gopinathan  Jiao Haijun  Spannenberg Anke  Döbler Christian  Mägerlein Wolfgang  Hugl Herbert  Beller Matthias
Institution:Leibniz-Institut für Organische Katalyse an der Universit?t Rostock e.V. Albert-Einstein-Strasse 29a, 18059 Rostock (Germany).
Abstract:Asymmetric epoxidation of olefins with 30 % H2O2 in the presence of Ru(pybox)(pydic)] 1 and Ru(pyboxazine)(pydic)] 2 has been studied in detail (pybox = pyridine-2,6-bisoxazoline, pyboxazine = pyridine-2,6-bisoxazine, pydic = 2,6-pyridinedicarboxylate). 35 Ruthenium complexes with sterically and electronically different substituents have been tested in environmentally benign epoxidation reactions. Mono-, 1,1-di-, cis- and trans-1,2-di-, tri-, and tetra-substituted aromatic olefins with versatile functional groups can be epoxidized with this type of catalyst in good to excellent yields (up to 100 %) with moderate to good enantioselectivies (up to 84 % ee). Additive and solvent effects as well as the relative rate of reaction with different catalysts have been established. It is shown that the presence of weak organic acids or an electron-withdrawing group on the catalyst increases the reactivity. New insights on the reaction intermediates and reaction pathway of the ruthenium-catalyzed epoxidation are proposed on the basis of density functional theory calculation and experiments.
Keywords:asymmetric oxidation  epoxidation  homogeneous catalysis  mechanism  olefins  ruthenium
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