Química Física y Analítica
Departamento
JOSE MANUEL
FERNANDEZ COLINAS
Profesor Titular de Universidad
Publicaciones en las que colabora con JOSE MANUEL FERNANDEZ COLINAS (16)
2023
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Homenaje a José Manuel Fernández Colinas
Ediciones de la Universidad de Oviedo
2020
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Reactivity of Amidinatosilylenes and Amidinatogermylenes with [PtMe2(η4-cod)]: Cis- versus trans-[PtMe2L2] Complexes and Cyclometalation Reactions
Organometallics, Vol. 39, Núm. 10, pp. 2026-2036
2019
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Mesityl(amidinato)tetrylenes as ligands in iridium(i) and iridium(iii) complexes: Silicon: versus germanium and simple κ1-coordination versus cyclometallation
Dalton Transactions, Vol. 48, Núm. 29, pp. 10996-11003
2015
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Reactivity Studies on a Binuclear Ruthenium(0) Complex Equipped with a Bridging κ2 N, Ge-Amidinatogermylene Ligand
Inorganic Chemistry, Vol. 54, Núm. 10, pp. 4850-4861
2013
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Deprotonation of C-Alkyl groups of cationic triruthenium clusters containing cyclometalated C-Alkylpyrazinium ligands: Experimental and computational studies
Chemistry - A European Journal, Vol. 19, Núm. 28, pp. 9251-9260
2010
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From allenes to edge-bridging allyl ligands or face-capping alkenyl ligands on a triruthenium hydrido carbonyl cluster: An experimental and DFT computational study
Organometallics, Vol. 29, Núm. 21, pp. 4818-4828
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Reactivity of [Os3(μ-H)2(CO)10] with N-heterocyclic carbenes: A combined experimental and DFT computational study
Organometallics, Vol. 29, Núm. 17, pp. 3828-3836
2009
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DFT mechanistic study of the transformation of cyclohexa-l,3-diene into a bridging allyl ligand upon reaction with a triruthenium hydrido carbonyl cluster
Organometallics, Vol. 28, Núm. 14, pp. 4217-4220
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Reactivity of [Ru4(μ-H)4(CO)12 with N-heterocyclic carbenes
Organometallics, Vol. 28, Núm. 6, pp. 1832-1837
2004
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Edge-bridging and face-capping coordination of alkenyl ligands in triruthenium carbonyl cluster complexes derived from hydrazines: Synthetic, structural, theoretical, and kinetic studies
Chemistry - A European Journal, Vol. 10, Núm. 24, pp. 6265-6278
1995
1994
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Carbonyl Clusters as Homogeneous Catalysts. Kinetic and Molecular Aspects of the Hydrogenation of Diphenylacetylene Promoted by an Alkenyl-Bridged Triruthenium Cluster Complex
Organometallics, Vol. 13, Núm. 11, pp. 4352-4359
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Preparation and Characterization of 92-Electron Hexahydridohexaruthenium Carbonyl Cluster Complexes. Their Potential Significance in Homogeneous Catalytic Hydrogenation
Organometallics, Vol. 13, Núm. 2, pp. 426-428
1992
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Addition of Mercury(II) Electrophiles to [Ru2(C10H8N2)(CO)4(PiPr3)2] and Selective Insertion versus Addition in the Reactions of Mercury(II) Electrophiles with Trinuclear Ru2Hg Clusters. X-ray Structures of [Ru2Hg(O2CCF3)2(C10H8N2)(CO)4(PiPr3)2] and [Ru2Hg2Cl4(C10H8N2)(CO)4(PiPr3)2].CH2Cl2(C10H10N2= 1,8-Diaminonaphthalene)
Inorganic Chemistry, Vol. 31, Núm. 7, pp. 1233-1238
1991
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Selective insertion of mercury(II) halides into the ruthenium-mercury bonds of trinuclear Ru2Hg clusters
Journal of the Chemical Society, Chemical Communications, pp. 168-170
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The addition of protons and metallic electrophiles to the electron-rich RuRu bond of [Ru2(μ,-dan)(CO)4(PiPr3)2]. X-ray structure of [Ru2(μ-AgPPh3)(μ-dan)(CO)4(PiPr3)2][BF4]·CH2Cl2 (dan=1,8-diamidonaphthalene)
Inorganica Chimica Acta, Vol. 185, Núm. 2, pp. 187-192