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http://hub.abes.fr/acs/periodical/inocaj/1995/volume_34/issue_9/101021ic00113a033/authorship/3
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http://hub.abes.fr/acs/periodical/jacsat/2001/volume_123/issue_31/101021ja003961m/authorship/4
http://hub.abes.fr/acs/periodical/cmatex/2003/volume_15/issue_10/101021cm0213218/authorship/8
http://hub.abes.fr/acs/periodical/inocaj/2003/volume_42/issue_9/101021ic020577c/authorship/7
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http://hub.abes.fr/acs/periodical/cmatex/2005/volume_17/issue_1/101021cm048756a/authorship/3
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http://hub.abes.fr/acs/periodical/inocaj/2001/volume_40/issue_13/101021ic001404v/authorship/4
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http://hub.abes.fr/acs/periodical/inocaj/1994/volume_33/issue_23/101021ic00101a002/authorship/3
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http://hub.abes.fr/cairn/periodical/lp/2013/issue_lp376/D33D07A73E80471FE053120B220A617D/authorship/1
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Preparation of reactive low-valent bis(diphenylphosphino)methane-bridged molybdenum-ruthenium complexes. Facile heterobimetallic activation of molecular hydrogen
Reactivity of ruthenium trihydrides with Broensted and Lewis acids. X-ray crystal structures of {Cp*Ru[C6H9P(C6H11)2]}BF4 and {{Cp*RuH[P(C6H11)3]}(.mu.-H)2Cu(.mu.-Cl)}2. Evidence for exchange coupling between two hydrogen atoms
First Observation in a Niobium Complex of the Rotation of a Coordinated H-D Molecule Blocked at the NMR Time Scale
Reactivity of ruthenium fragment Cp*Ru+ with acyclic unsaturated hydrocarbons: a novel catalytic carbon-carbon bond activation reaction
Preparation and characterization of organosols of monodispersed nanoscale palladium. Particle size effects in the binding geometry of adsorbed carbon monoxide
RuHX(H2)(PiPr3)2 (X = Cl, I): 16 Electron Dihydrogen-Hydride or Trihydride Complexes?
Selective aromatization of the A-ring of steroids through carbon-carbon, carbon-hydrogen, and carbon-oxygen bond activation by an electrophilic ruthenium complex
Highly Selective Dehydrogenative Silylation of Ethylene Using the Bis(dihydrogen) Complex RuH2(H2)2(PCy3)2 as Catalyst Precursor
Surface Chemistry on Colloidal Metals. Reversible Adsorbate-Induced Surface Composition Changes in Colloidal Palladium-Copper Alloys
Synthesis of Coinage Metal Cation Adducts of Nb(C5H4SiMe3)2H(CO). X-ray Crystal Structure of [{Nb(C5H4SiMe3)2(CO)}2(.mu.-H)2Cu]PF6
Selective synthesis, characterization, and spectroscopic studies on a novel class of reduced platinum and palladium particles stabilized by carbonyl and phosphine ligands
Dehydrogenation of a cyclohexyl group in tricyclohexylphosphine complexes of ruthenium. X-ray crystal structure of [Ru(C6H9PCy2)(CF3COO)]2(.mu.-CF3COO)2(.mu.-OH2)
Reactivity of the Bis(dihydrogen) Complex RuH2(H2)2(PCy3)2 toward Small Molecules and Weak Acids
Synthesis, Spectroscopic Properties, and X-ray Crystal Structure of {[Nb(C5H3[SiMe3]2)2H3]2Au}+, a Complex Showing Large Quantum Mechanical Exchange Couplings
Theoretical calculations on niobium and tantalum trihydride complexes. Relations with the problem of quantum mechanical exchange coupling
Synthesis and Reactivity of Hydridotris(pyrazolyl) Borate Dihydrogen Ruthenium Complexes
Upon the Chemical Origin of Exchange Couplings in d2 Systems
Synthesis of monodispersed bimetallic palladium-copper nanoscale colloids
[Cp2Ta(.eta.2-H2)(CO)]BF4: The First Thermally Stable Group 5 Dihydrogen Complex
Ligand-Stabilized Ruthenium Nanoparticles: Synthesis, Organization, and Dynamics
Versatile Synthesis of Individual Single-Walled Carbon Nanotubes from NickelNanoparticles for the Study of Their Physical Properties
EXAFS and XANES Study of a Pure and Pd Doped Novel Sn/SnOx Nanomaterial
Ruthenium Carbene Complexes Containing aTriazolidene Cationic Ligand
One-Pot Synthesis of Core−Shell FeRhNanoparticles
Ruthenium Dihydrogen Complexes with Wide Bite Angle Diphosphines
Preparation and Characterization of Ruthenium(II) Monophosphaferrocene Complexes.Reactivity, Dynamic Solution Behavior, and X-ray Structure of[RuH2(η2-H2)(PCy3)2(2-phenyl-3,4-dimethylphosphaferrocene)]
Synthesis, Neutron Structure, and Reactivity of the Bis(dihydrogen) ComplexRuH2(η2-H2)2(PCyp3)2 Stabilized by Two Tricyclopentylphosphines
Ruthenium Dihydridobis(pyrazolyl)borate ComplexesAdopting a κ3 N,N,H, κ2 N,H, or κ2 N,N Bonding Mode
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