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Results: 1-13 |
Results: 13

Authors: Solin, N Narayan, S Szabo, KJ
Citation: N. Solin et al., Palladium-catalyzed tandem bis-allylation of isocyanates, ORG LETT, 3(6), 2001, pp. 909-912

Authors: Macsari, I Szabo, KJ
Citation: I. Macsari et Kj. Szabo, Palladium-catalyzed cyclization of allylsilanes with nucleophilic displacement of the silyl group, CHEM-EUR J, 7(19), 2001, pp. 4097-4106

Authors: Szabo, KJ
Citation: Kj. Szabo, Nature of the interaction between beta-substituents and the allyl moiety in (eta(3)-allyl)palladium complexes, CHEM SOC RE, 30(2), 2001, pp. 136-143

Authors: Solin, N Szabo, KJ
Citation: N. Solin et Kj. Szabo, Mechanism of the eta(3)-eta(1)-eta(3) isomerization in allylpalladium complexes: Solvent coordination, ligand, and substituent effects, ORGANOMETAL, 20(25), 2001, pp. 5464-5471

Authors: Solin, N Narayan, S Szabo, KJ
Citation: N. Solin et al., Control of the regioselectivity in catalytic transformations involving amphiphilic bis-allylpalladium intermediates: Mechanism and synthetic applications, J ORG CHEM, 66(5), 2001, pp. 1686-1693

Authors: Jonasson, C Kritikos, M Backvall, JE Szabo, KJ
Citation: C. Jonasson et al., Asymmetric allyl-metal bonding in substituted (eta(3)-allyl)palladium complexes: X-ray structures of cis- and trans-4-acetoxy-[eta(3)-(1,2,3)-cyclohexenyl]palladium chloride dimers, CHEM-EUR J, 6(3), 2000, pp. 432-436

Authors: Szabo, KJ
Citation: Kj. Szabo, Umpolung of the allylpalladium reactivity: Mechanism and regioselectivity of the electrophilic attack on bis-allylpalladium complexes formed in palladium-catalyzed transformations, CHEM-EUR J, 6(23), 2000, pp. 4413-4421

Authors: Macsari, I Szabo, KJ
Citation: I. Macsari et Kj. Szabo, Umpolung of the reactivity of allylsilanes. Palladium(II) catalyzed cyclization of allylsilyl alcohols: a new route to substituted 2-vinyltetrahydrofurans, TETRAHEDR L, 41(7), 2000, pp. 1119-1122

Authors: Aranyos, A Csjernyik, G Szabo, KJ Backvall, JE
Citation: A. Aranyos et al., Evidence for a ruthenium dihydride species as the active catalyst in the RuCl2(PPh3)-catalyzed hydrogen transfer reaction in the presence of base, CHEM COMMUN, (4), 1999, pp. 351-352

Authors: Aranyos, A Csjernyik, G Szabo, KJ Backvall, JE
Citation: A. Aranyos et al., Evidence for a ruthenium dihydride species as the active catalyst in the RuCl2(PPh3)(3)-catalyzed hydrogen transfer reaction in the presence of base (February, pg 351, 1999), CHEM COMMUN, (20), 1999, pp. 2131-2131

Authors: Macsari, I Szabo, KJ
Citation: I. Macsari et Kj. Szabo, Nature of the interactions between the beta-silyl substituent and allyl moiety in (eta(3)-allyl)palladium complexes. A combined experimental and theoretical study, ORGANOMETAL, 18(4), 1999, pp. 701-708

Authors: Macsari, I Hupe, E Szabo, KJ
Citation: I. Macsari et al., Regioselective catalytic transformations involving beta-silyl-substituted (eta(3)-allyl)palladium complexes: An efficient route to functionalized allylsilanes, J ORG CHEM, 64(26), 1999, pp. 9547-9556

Authors: Szabo, KJ
Citation: Kj. Szabo, Effects of polar gamma-substituents on the structure and stability of palladacyclobutane complexes, THEOCHEM, 455(2-3), 1998, pp. 205-211
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