Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis (original) (raw)

Investigations into the Formation and Stability of Cationic Rhodium Diphosphane η6-Arene Complexes

Detlef Heller

Chemistry - A European Journal, 2012

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Further examples of binuclear phosphido-bridged complexes of rhodium(I). Evidence for bridge-cleavage reactions

Eric Burkhardt

Inorganic Chemistry, 1984

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Rhodium(I) macrocyclic and cage-like structures containing diphosphine bridging ligands

Julià Arcau

Transition Metal Chemistry, 2016

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Activation of a (cyclooctadiene) rhodium(i) complex supported by a chiral ferrocenyl phosphine thioether ligand for hydrogenation catalysis: a combined parahydrogen NMR and DFT study

Natalia Belkova

Dalton Transactions, 2013

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Self-Assembly of Bidentate Ligands for Combinatorial Homogeneous Catalysis: Asymmetric Rhodium-Catalyzed Hydrogenation

Bernhard Breit

ChemInform, 2006

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Enhanced Hydrogenation Activity and Recycling of Cationic Rhodium Diphosphine Complexes through the Use of Highly Fluorous and Weakly-Coordinating Tetraphenylborate Anions

Elwin de Wolf

Advanced Synthesis & Catalysis, 2003

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Fluorous derivatives of [Rh(COD)(dppe)]BX4 (X=F, Ph): synthesis, physical studies and applications in catalytic hydrogenation of 1-alkenes and 4-alkenes

Peter Frederik

Tetrahedron Letters, 2002

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The Influence of Substituents in Diphosphine Ligands on the Hydrogenation Activity and Selectivity of the Corresponding Rhodium Complexes as Exemplified by ButiPhane

Stefan Schulz

ChemCatChem, 2011

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Sulfonamido−Phosphoramidite Ligands in Cooperative Dinuclear Hydrogenation Catalysis

Joost Reek

Journal of the American Chemical Society, 2009

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Activation of Dichloromethane by (Phosphane)orhodium(I) Complexes − X-ray Structure of [{(PEt3)2RhCl}2(μ-Cl)2(μ-CH2

Ousmane Diallo

European Journal of Inorganic Chemistry, 1998

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Activation of Alkynols by [Cp*RuCl(PEt 3 ) 2 ]: New Intermediates and Alternative Dehydration Products. X-ray Crystal Structures of [Cp*Ru{CCHC(CH 2 )Ph}(PEt 3 ) 2 ][BPh 4 ], [Cp*Ru(CCCPh 2 )(PEt 3 ) 2 ][BPh 4 ], and [Cp*Ru{C⋮CC(PEt 3 )Me 2 }(PEt 3 ) 2 ][BPh 4

Emilio Bustelo, Manuel Jimenez Tenorio, Pedro Valerga

Organometallics, 1999

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Formation of organorhodium complexes via C–H bond activation of 1,3-di(phenylazo)benzene

S. Bhatacharya

Dalton Transactions, 2011

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NewJ.Chem., 2015 39, 1101-14.pdf

Chittaranjan Sinha

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Fluorous derivatives of [Rh(COD)(dppe)]BX4 (X=F, Ph): synthesis, physical studies and application in catalytic hydrogenation of 1-alkenes and 4-alkynes

Gerard Van Koten

Tetrahedron, 2002

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Synthesis, Characterization, and Reactivity of New Alkynyl Complexes of Rhodium and Iridium: Preparation of Neutral (M−M‘: M = Rh, Ir; M‘ = Pt, Pd) Hetero-Alkynyl-Bridged Dinuclear Complexes

Antonio Sans Martín

Organometallics, 1998

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The Catalytic Transformation of Benzo[b]thiophene to 2-Ethylthiophenol by a Soluble Rhodium Complex: The Reaction Mechanism Involves Ring Opening Prior to Hydrogenation

veronica herrera

Journal of The American Chemical Society, 1995

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Rhenium Nitrosyl Complexes for Hydrogenations and Hydrosilylations

Olivier Blacque

Organometallics, 2008

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Experimental and Theoretical Studies of the ancillary ligand (E)-2-((3-amino-pyridin-4-ylimino)-methyl)-4,6-diterbutylphenol in Rhenium(I) core

Juan Manríquez, Marcelo Preite

New J. Chem., 2015

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Catalytic Hydrogenation of Norbornadiene by a Rhodium Complex in a Self-Folding Cavitand

Anton Vidal-ferran, Carles Bo

Angewandte Chemie International Edition, 2010

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Inorg. Chem. Front., 2015,.pdf

Chittaranjan Sinha

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Mononuclear Rh(II) PNP-Type Complexes. Structure and Reactivity

Eyal Ben Ari

Inorganic Chemistry, 2007

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Rhodium(I) Complexes with OPPy2Ph and OPPy3 (Py = 2-Pyridyl), and Their Behavior in Hydrogenation Reactions

Pablo Espinet

European Journal of Inorganic Chemistry, 2001

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Binuclear ruthenium complexes employing bis(dimethylphosphino)methane (dmpm). Crystal and molecular structures of Ru2(dmpm)2(CO)5.cntdot.C6H5CH3 and Ru2(dmpm)2(CO)4(PhCCPh)

Wayne Gladfelter

Organometallics, 1989

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About the Crystal Structure of [Rh(( S , S )-DIPAMP)- (( Z )-2-benzoylamino-3-(3,4-dimethoxyphenyl)-methyl Acrylate)]BF 4 : Major or Minor Catalyst−Substrate Complex

Helmut Buschman

Organometallics, 2005

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Cyclic Trinuclear Rh 2 M Complexes (M = Rh, Pt, Pd, Ni) Supported by meso -1,3-Bis[(diphenylphosphinomethyl)phenylphosphino]propane

Takayuki Nakajima

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Selectivity in the activation of fluorinated aromatic hydrocarbons by rhodium complexes [(C5H5)Rh(PMe3)] and [(C5Me5)Rh(PMe3)]

Anthony Selmeczy

Organometallics, 1994

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New cationic rhodium(I)-iridium(III) complexes with bridging hydride and chloride ligands. Synthesis and X-ray crystal structure of [(diphos)Rh(μ-H)(μ-Cl)IrCl(PEt3)3]BF4 and [(diphos)Rh(μ-H)(μ-Cl)IrH(PEt3)3]BF4

Dominique MATT

Inorganic Chemistry, 1984

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N–H Activation by Rh(I) via Metal–Ligand Cooperation

Yael Diskin-Posner

Organometallics, 2012

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Substitution and Hydrogenation Reactions on Rhodium(I)−Ethylene Complexes of the Hydrotris(pyrazolyl)borate Ligands Tp‘ (Tp‘ = Tp, Tp Me2

tp tp

Inorganic Chemistry, 2000

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Ru-CO SBJournal of Organometallic Chemistry 694 (2009) 4124–4133.pdf

Chittaranjan Sinha

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Facile substitution of triphenylphosphine in Wilkinson's catalyst by Sn(N-tert-Bu)2SiMe2. Syntheses and molecular structures of square-planar and homoleptic trigonal-bipyramidal stannylene complexes of rhodium(I)

Lothar Stahl

Inorganic Chemistry, 1989

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Neutral Rhodium(I) Aminophosphine-Phosphinite Complexes: Synthesis, Structure, and Use in Catalytic Asymmetric Hydrogenation of Activated Keto Compounds. Crystal Structure of (S)-1-(Dicyclohexyl- phosphino)-2-(((dicyclohexylphosphino)oxy)methyl)- pyrrolidinerhodium(I)

Nicolas Kokel

Organometallics, 1995

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Synthesis and structure of the rhodium complex [Ph3MeP][RhBr4(DMSO)2-trans]

Nikolay Somov

Russian Journal of Coordination Chemistry, 2014

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