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Citation: Rr. Schrock et al., CH bond activation in cations of the type {[(2,4,6-Me3C6H2NCH2CH2)(2)NMe]ZrR}(+) and a simple solution that yields a catalyst for the living polymerization of 1-hexene, ORGANOMETAL, 20(6), 2001, pp. 1056-1058
Citation: Jt. Goodman et Rr. Schrock, Kinetic investigation of the polymerization of 1-hexene by the {[t-BuNON]ZrMe}[B(C6F5)(4)] initiator, ORGANOMETAL, 20(24), 2001, pp. 5205-5211
Citation: Kc. Hultzsch et al., Molybdenum imido alkylidene complexes containing biphen ligands that have silyl groups attached through the 6 and 6 ' methyl group carbon atoms, ORGANOMETAL, 20(22), 2001, pp. 4705-4712
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Citation: Fv. Cochran et Rr. Schrock, Alkylidyne complexes of molybdenum and tungsten that contain the [(3,4,5-C6H2F3NCH2CH2)(2)NMe](2-) ligand, ORGANOMETAL, 20(11), 2001, pp. 2127-2129
Authors:
Siemeling, U
Schrock, RR
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Citation: U. Siemeling et al., Ferrocenyl-functionalised molybdenum imido complexes: An approach to redox-tunable olefin polymerisation catalysts, Z ANORG A C, 627(5), 2001, pp. 925-928
Authors:
Schrock, RR
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Citation: Rr. Schrock et al., Reactions of molybdenum and tungsten alkyl and aryl complexes that containa triamidoamine ligand with carbon monoxide, J ORGMET CH, 617(1), 2001, pp. 495-501
Citation: Ge. Greco et Rr. Schrock, Synthesis of triamidoamine ligands of the type (ArylNHCH(2)CH(2))(3)N and molybdenum and tungsten complexes that contain an [(ArylNCH(2)CH(2))(3)N](3-) ligand, INORG CHEM, 40(16), 2001, pp. 3850-3860
Citation: Ge. Greco et Rr. Schrock, Synthesis, structure, and electrochemical studies of molybdenum and tungsten dinitrogen, diazenido, and hydrazido complexes that contain aryl-substituted triamidoamine ligands, INORG CHEM, 40(16), 2001, pp. 3861-3878
Citation: P. Mehrkhodavandi et Rr. Schrock, Cationic hafnium alkyl complexes that are stable toward beta-hydride elimination below 10 degrees C and active as initiators for the living polymerization of 1-hexene, J AM CHEM S, 123(43), 2001, pp. 10746-10747
Citation: Ds. La et al., Catalytic asymmetric ring-opening metathesis/cross metathesis (AROM/CM) reactions. Mechanism and application to enantio selective synthesis of functionalized cyclopentanes, J AM CHEM S, 123(32), 2001, pp. 7767-7778
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Cefalo, DR
Kiely, AF
Wuchrer, M
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Schrock, RR
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Citation: Dr. Cefalo et al., Enantioselective synthesis of unsaturated cyclic tertiary ethers by Mo-catalyzed olefin metathesis, J AM CHEM S, 123(13), 2001, pp. 3139-3140
Citation: Ge. Greco et al., Synthesis of [(Me3SiNCH2CH2)(3)N](3-) and [(C6F5NCH2CH2)(3)N](3-) complexes of molybdenum and tungsten that contain CO, isocyanides, or ethylene, ORGANOMETAL, 19(6), 2000, pp. 1132-1149
Authors:
Schrock, RR
Seidel, SW
Schrodi, Y
Davis, WM
Citation: Rr. Schrock et al., Synthesis of zirconium complexes that contain the diamidophosphine ligands[(Me3SiNCH2CH2)(2)PPh](2-) or [(RNSiMe2CH2)(2)-PPh](2-) (R = t-Bu or 2,6-Me2C6H3) (vol 18, pg 430, 1999), ORGANOMETAL, 19(6), 2000, pp. 1204-1204
Authors:
Schrock, RR
Casado, AL
Goodman, JT
Liang, LC
Bonitatebus, PJ
Davis, WM
Citation: Rr. Schrock et al., Preparation and activation of complexes of the type [((mesityl)NCH2CH2)(2)NX]ZrMe2 (X = H, Me) with [Ph3C][B(C6F5)(4)] or [PhNMe2H][B(C6F5)(4)], ORGANOMETAL, 19(25), 2000, pp. 5325-5341
Citation: Fv. Cochran et al., Molybdenum, tungsten, and rhenium d(2) complexes that contain the C(C6F5NCH2CH2)(2)NMe](2-) ligand, ORGANOMETAL, 19(13), 2000, pp. 2414-2416
Citation: Lc. Liang et al., Synthesis of titanium, zirconium, and hafnium complexes that contain the [(mesitylN-o-C6H4)(2)O](2-) ligand, ORGANOMETAL, 19(13), 2000, pp. 2526-2531
Citation: Gs. Weatherhead et al., Modular Mo-based catalysts for efficient asymmetric olefin metathesis. Catalytic enantioselective synthesis of cyclic ethers and acetals, TETRAHEDR L, 41(49), 2000, pp. 9553-9559
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