Burrell, et al., “Synthesis and Reactions of Ru(=CH2) Cl (NO)(PPh3)2, a Stable Terminal Methylene Complex and the Crystal Structure of Ru(CH2PPh3)2(η2-C2F4Cl (NO)) (PPh3)”, J. Chem. Soc., Dalton Trans., pp. 609-614, (1991). |
Ivin, “Olefin Metathesis” Academic Press, pp. vii-x, 34-36, (1983). |
McGrath, et al., “Aqueous Ring-Opening Metathesis Polymerization of 7-Oxanorbornene Derivatives Using Ruthenium Catalysts”, Olefin Metathesis and Polymerization Catalysts, pp. 526-36, (1990). |
Novak, et al., “Catalytic Organometallic Chemistry in Water: The Aqueous Ring-Opening Metathesis Polymerization of 7-Oxanorbornene Derivatives”, J. Am. Chem. Soc. 110, pp. 7542-43, (1988). |
Hillmyer, et al., “The Aqueous Ring-Opening Metathesis Polymerization of exo-N-Methyl-7-oxabicyclo [2.2.1] hept-5-ene-2, 3-dicarbonximide,” Polymer Preprints, 32, pp. 163-63 (1991). |
Carter, et al., “Review of the Chemistry of Cyclopropane Compounds”, Chemical Reviews 64 (5), pp. 497-525, (1964). |
Schmidbaur, et al., “Ylide Chemistry: An Account of Structural, Conformational and Redox Investigations”, Phosphorous and Sulfur 18, pp. 167-170 (1983). |
“Metathesis of Functionalized Olefins”, J. of Molecules Catalysis 15, pp. 35-45 (1982). |
Bruce, et al., “Cyclopentadienyl-Ruthenium and—Osmium Chemistry. Some Reactions of Substituted Vinylidene Complexes,” J. Org. Chem. 171: C5-C8 (1979). |
M.H.L. Green, et al., “Carbene Complexes of Iron, Molybdenum, and Ruthenium: A New Route to Metal-Carbene Derivatives,” J. Chem. Soc. (A) pp. 794-707 (1971). |
LeBozec, et al., “A New Route to Vinylcarbene Metal Complexes in One Step from 2-Propan-1-ols and Arene Ruthenium(II) Derivatives,” J. Chem. Soc., Chem. Comm. pp. 219-21 (1989). |
Grundy, et al., “Migratory-Insertion Reactions of Osmium (II) Ethyl Complexes Derived from an Osmium (0) Ethylene Complex,” J. Org. Chem. 216, pp. 255-262, (1981). |
Grundy, et al., “Propionyl Complexes of Ruthenium Derived from the Reaction of Ethylene with RuHCL(CO2)(PPh3)2,” J. Org. Chem., 265, pp. 77-85 (1984). |
Schrock, et al., “Living Ring-Opening Metathesis Polymerization Catalyzed by Well Characterized Transition Metal Alkylidene Complexes,” Acc. Chem. Res. 23, pp. 158-65, (1990). |
Fu, et al., “Catalytic Ring-Closing Metathesis of Functionalized Dienes by a Ruthenium Carbene Complex”, J. Am. Chem. Soc., 115, pp. 9856-57, (1993). |
Nguyen, et al. “Ring-Opening Metathesis Polymerization (ROMP) of Norbornene by a Group VIII Carbene Complex in Protic Media,” J. Am. Chem. Soc. 114, pp. 3974-75 (1992). |
Hillmyer, et al. “The ROMP of COD By a Well-defined Metathesis Catalyst in the Presence of a Difunctional Chain Transfer Agent: The Preparation of Hydroxy-telechelic 1,4-Poly(butadiene),” Polymer Preprints, 34(2), pp. 388 (Jul., 1993). |
Hillmyer, et al. “Preparation of Hydroxytelechelic Poly(butadiene) via Ring-Opening Metatheis Polymerization Employing a Well-defined Metathesis Catalyst”, Macromolecules 26 (4), pp. 872-74 (1992). |
Nguyen, et al., “Syntheses and Activities of New Single-Component Ruthenium-Based Olefin Metathesis Catalysts”, J. Am. Chem. Soc. 115 (21), pp. 9858-59 (1993). |
Grubbs, et al., “Ring-Opening Metathesis Polymerization Catalysts”, Polymer Preprints, 35(1), p. 688 (1994). |
Schwab, et al., “Synthesis and Application of RuCI2 (=CHR/) (PR3)2: The Influence of the Alkylidene Moiety on Metathesis Activity”, J. Am. Chem. Soc., 118 (1), pp. 100-10, (1996). |
Schwab, et al., “A Series of Well-Defined Metathesis Catalysts-Synthesis of [RuCl2(=CHR/) (PR3)2] and its Reactions”, Angew. Chem. Int. Ed. Engl., 34 (18), pp. 2039-411, (1995). |
Wagener, et al., “Acyclic Diene Metathesis (ADMET) Polymerization,” Macromolecules, 24, pp. 2649-2657 (1991). |
Novak, et al., “The Ring Opening Metathesis Polymerization of 7-Oxabicyclo [2.2.1] hept-5-ene Derivatives: A New Acyclic Polymeric Ionophone,” J. Am. Chem. Soc., vol. 110, pp. 960-961 (1988). |
Collman, et al., “Radical Mechanism for the Decomposition of RuOEP(CH2CH3)2•Determination of the Metal-Carbon Bond Dissociation Energy,” J Am. Chem. Soc. 108, pp. 1332-33 (1986). |
Wakatsuki et al., “Regio-and Stereocontrolled Dimerization of tert-Butylacetylene to (Z)-l, 4-Di-tert-butylbutriene by Ruthenium Catalysis. Reaction Mechanism Involving Alkenyl-Vinylidene Coupling and Rearrangement of the Metal-Bound C4 Unit”, J. Am. Chem., 113(25), 9604-9610, 1991. |