Dannley, et al., “the Synthesis of Silyl Hydroperoxides and Bissilyl Peroxides”, J. Org. Chem. 30: 2417-2419 (1965). |
Rebek, et al., “New Epoxidation Reagents Derived form Alumina and Silicon”, Tetrahedron Lett: 4337-4338 (1979). |
Warwel, et al., “Formation of Vicinal Diols by Re2O2-Catalyzed Hydroxylation of Alkenes with Hydrogen Peroxide”, Chem. Commun.: 1578-1579 (1991). |
Hermann, et al., “Alkyl-and Arylrhenium Trioxides”, Angew. Chem. Int. Ed. Engl. 30: 185-187 (1991). |
Hermann, et al., “Methyltrioxorhenium as Catalyst for Olefin Oxidation”, angew. Chem. Int. Ed. Engl. 30: 1638-1641 (1991). |
Hermann, et al., “Methyltrioxorhenium(VII) as Catalyst for Epoxidations: Structure of the Active Species and Mechanism fo Catalysis”, Angew. Chem. Int. Ed. Engl. 32: 1157-1160 (1993). |
Hermann, et al., “Alkrylhenium Oxides as Homogenous Epoxidation Catalysts: Activity, Selectivity, Stability, Deactivation”, J. Mol. Catal. 86: 243-266 (1994). |
Hermann, et al., “Essays on Organometallic Chemistry, VII, Laboratory Curiosities of Yesterday, Catalysis of Tomorrow: Organometallic Oxides”, J. Organomet. Chem. 500: 149-174 (1995). |
Al-Ajlouni, et al., “Epoxidation of Styrenes by Hydrogen Peroxide as Catalyzed by methylrhenium Trioxide”, J. Am. Chem. Soc. 117: 9243-9250 (1995). |
Hermann, et al., “The Peroxo Perrhenic Acid H4Re2O13: An Oxygen-Rich Metal Peroxide and Oxidation Catalyst”, Chem. Eur. J. 2: 168-173 (1996). |
Adam, et al., “Methyltrioxorhenium(VII)-Catalyzed Epoxidation of Alkenes with the Urea/Hydrogen Peroxide Adduct”, Angew. Chem. Int. Ed. Engl. 35: 533-535 (1996). |
Al-Ajlouni, et al., “Kinetics and Mechanism of the Epoxidation of Alkyl-Substituted Alkenes by Hydrogen Peroxide, Catalyzed by Methylthenium Trioxide”, J. Org. Chem. 61: 3969-3976 (1996). |
Hermann, et al., “Multiple Bonds Between Transition Metals and Main-Group Elements: Part 161 Oxygen-Donor Adducts of Organorhenium(VII) Oxides: Syntheses, Structures, and Catalytic Properties”, J. Mol. Catal. 118: 33-45 (1997). |
Barron, et al., “the Selective Functionalization of Saturated Hydorcarbons. Part 37. Utilization of a New Oxidant: Bis(trimethylsilyl) Peroxide”, Tetrahedron 53: 487-510 (1997). |
Barton, et al., “The Selective Functionalization of Saturated Hydrocarbons. Part 38. Bis(trimethylsilyl) Peroxide: an Efficient Oxidant for the Functionalization of Hydrocarbons Involving the FeIISMFeIV Manifold”, Tetrahedron 53: 511-520 (1997). |
Hermann, et al., “Multiple Bonds Between Transition Metals and Main-Group Elements Part 168. methyltrioxorhenium/Lewis base Catalysts in Olefin Epoxidation”, J. Organomet. Chem. 549: 319-322 (1997). |
Rudolph, et al., “Highly Efficient Epoxidation of Olefins Using Aqueous H2O2 and Catalytic Methyltrioxorhenium/Pyridine: Pyridine-Mediated Ligand Acceleration”, J. Am. Chem. Soc. 119: 6189-6190 (1997). |
Copcret. et al., “A Simple and Efficient Method for Epoxidation of Terminal Alkenes”, Chem. Commun.: 1565-1566 (1997). |