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Synthesis and Reactivity of Ru(.eta.5-C5Me5)(.eta.4-cyclopentadienone) Complexes. X-ray Structures of Ru(.eta.5-C5Me5)(.eta.4-C5H4O)Br, Ru(.eta.5-C5Me5)(.eta.4-C5H3O-2-Br)Br, and [Ru(.eta.5-C5Me5)(.eta.4-C5H2O-2-Me,5-PCy3)Br]CF3SO3
Synthesis, characterization, and crystal structure of hydroxyruthenocene
Redox kinetics of metal complexes in nonaqueous solutions: reductions of tris(1,10-phenanthroline)- and tris(2,2'-bipyridine)iron(III) by hexakis(N,N-dimethylformamide)iron(II) in acetonitrile: role of first-coordination sphere
Reactions of tertiary phosphines, phosphites, and arsines with [Ru(.eta.5-C5H5)(.eta.4-C5H4O)]+ derivatives: x-ray structures of [Ru(.eta.5-C5H4PCy3)(.eta.5-C5H4OH)]+, [Ru(.eta.5-C5H5)(.eta.4-C5H4O)(P(OPh)3]+, and [Ru(.eta.5-C5H5)(.eta.4-C5H3O-2-PPh3)(MeCN)2+
1H-NMR and electrochemical studies on ligated iron(III)perchlorates in acetonitrile-d3
Facile nucleophilic substitution on coordinated .eta.5-cyclopentadienyl
Redox kinetics of metal complexes in nonaqueous solutions: oxidation of methyl-substituted tris(1,10-phenanthroline)iron(II) complexes by hexakis(N,N-dimethylformamide)iron(III) in acetonitrile
Kinetics and Mechanism of Nucleophilic Substitutions on Coordinated Polyenes andPolyenyls. 1. Reactions of Tertiary Phosphines with [Ru(η5-C5H5)(η4-C5H4O)(L)]CF3SO3(L = CH3CN, Benzonitrile, Thiourea, Pyridine)
Synthesis and Reactivity ofRuCp*(κ2(P,N)-Ph2PCH2CH2NMe2)Cl. Chelate-AssistedMethyl C−H Activation and Formation of the NovelComplex [RuCp*(κ3(P,N,C)-Ph2PCH2CH2N(CH2)Me)Cl]BPh4
Reductive Dimerization of Nitric Oxide totrans-Hyponitrite in the Coordination Sphere of aDinuclear Ruthenium Complex
Ruthenium Tris(pyrazolyl)borate Complexes. 14.Synthesis and Characterization of (Allyloxy)carbeneComplexes
Thermodynamically Controlled Formation ofDiastereopure Three-Legged Piano-Stool Complexes. TheSubstitution Chemistry of[RuCp(aminophosphinoferrocene)(CH3CN)]PF6
Migratory Insertion of Acetylene in N-Heterocyclic CarbeneComplexes of Ruthenium: Formation of(Ruthenocenylmethyl)imidazolium Salts
Ruthenium Tris(pyrazolyl)borate Complexes. 1.Synthesis and Reactivity of Ru(HB(pz)3)(COD)X (X = Cl,Br) and Ru(HB(pz)3)(L2)Cl (L = Nitrogen and PhosphorusDonor Ligands)
Comparing Reactivities of Metal Complexes in Solutionand on Surfaces by IR Spectroscopy and Time-Resolvedin Situ Ellipsometry
Synthesis and Reactivity of Ruthenium Allyl CarbeneComplexes. C−H Activation/Dehydrogenation of aCyclohexyl Substituent in PCy3
Achiral and Chiral Transition Metal Complexes with ModularlyDesigned Tridentate PNP Pincer-Type Ligands Based onN-Heterocyclic Diamines
Ruthenium-Catalyzed Dimerization of Terminal AlkynesInitiated by a Neutral Vinylidene Complex
Addition of Acetylenes to Olefins. Oxidative Couplingversus [2+2] Cycloaddition to a Vinylidene Intermediate
“Unsymmetrical” Diruthenium Amidinates in Which theμ2-Amidinate Bridge Is Perpendicular to the Ru−RuAxis: Synthesis and Reactions of Derivatives of[(η5-C5Me5)Ru(μ-amidinate)Ru(η5-C5H5)]+
A Modular Approach to Achiral and Chiral Nickel(II),Palladium(II), and Platinum(II) PCP Pincer Complexes Based onDiaminobenzenes
Modularly Designed Transition Metal PNP and PCP Pincer Complexes based on Aminophosphines: Synthesis and Catalytic Applications
Facile Migratory Insertion of a N-Heterocyclic Carbene into aRuthenium−Carbon Double Bond: A New Type of Reaction of a NHC Ligand
Ruthenium Tripyrazolylborate Complexes. 8.trans-Diene Coordination in RutheniumTripyrazolylborate Complexes
Activation of η5-Cyclopentadienyl Ligands towardNucleophilic Attack through η5 → η3 Ring Slippage.Kinetics, Thermodynamics, and NMR Spectroscopy
[RuCp(PR3)(CH3CN)2]PF6 (R = Ph, Me, Cy). ConvenientPrecursors for Mixed Ruthenium(II) and Ruthenium(IV)Half-Sandwich Complexes
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