José Tomás
Cuenca Agreda
Catedrático/a de Universidad
Gerardo Javier
Jiménez Pindado
Catedrático/a de Universidad
Publications dans lesquelles il/elle collabore avec Gerardo Javier Jiménez Pindado (21)
2020
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Cyclopentadienyl-silsesquioxane titanium compounds as suitable candidates for immobilization on silica-based supports
Inorganica Chimica Acta, Vol. 501
2018
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Chiral Titanium(IV) Complexes Containing Polydentate Ligands Based on α-Pinene. Catalytic Activity in Sulfoxidation with Hydrogen Peroxide
Organometallics, Vol. 37, Núm. 20, pp. 3437-3449
2017
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Suitable Approach to Prepare N-Substituted Niobium Complexes – Study of the Factors Controlling the Process
European Journal of Inorganic Chemistry, Vol. 2017, Núm. 7, pp. 1060-1066
2016
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Cyclopentadienyl–Silsesquioxane Titanium Catalysts: Factors Affecting Their Formation and Activity in Olefin Epoxidation with Aqueous Hydrogen Peroxide
European Journal of Inorganic Chemistry, Vol. 2016, Núm. 17, pp. 2843-2849
2015
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Selective sulfoxidation with hydrogen peroxide catalysed by a titanium catalyst
Catalysis Science and Technology, Vol. 5, Núm. 1, pp. 320-324
2013
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Aminoarenethiolate aluminum complexes: Synthesis, characterization, and use in l -lactide polymerization
Organometallics, Vol. 32, Núm. 9, pp. 2618-2624
2012
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Cyclopentadienyl-silsesquioxane titanium complexes: Highly active catalysts for epoxidation of alkenes with aqueous hydrogen peroxide
Inorganic Chemistry, Vol. 51, Núm. 11, pp. 6345-6349
2011
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Reactions of [Ti(η5-C5Me4SiMe 2Cl)Cl3] with diamines, a suitable approach to prepare mono- and dinuclear cyclopentadienylsilyl-amido titanium complexes with constrained and unstrained structures
Organometallics, Vol. 30, Núm. 11, pp. 2993-3000
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Synthesis and structural characterization of novel tetranuclear organotitanoxane derivatives
Dalton Transactions, Vol. 40, Núm. 21, pp. 5728-5733
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Síntesis de catalizadores organometálicos usados en epoxidación catalítica de olefinas
Terceras Jornadas de Jóvenes Investigadores de la Universidad de Alcalá
2009
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M-Cl/Si-Cl preferential reactivity in chlorosilyl-substituted cyclopentadienyl early transition metal complexes in reactions with amines: Key to understanding the nature of the final product
Organometallics, Vol. 28, Núm. 24, pp. 6975-6980
2008
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Cyclopentadienyl-silyl-amido versus imido niobium complexes. The role of additional amine functionalities: A combined experimental and theoretical study
Organometallics, Vol. 27, Núm. 5, pp. 839-849
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Organotitanoxanes with unique structure among transition-element organometallic oxide derivatives
Inorganic Chemistry, Vol. 47, Núm. 10, pp. 3940-3942
2007
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Synthesis, characterization, and reactivity of niobium and tantalum complexes bearing metal-nitrogen bonds. X-ray molecular structure of [Nb(C 5H4SiMe3){NH(CH2) 2-η-NH2}Cl3] and the novel tetranuclear niobium Oxo derivative [{Nb(C5H4SiMe3) Cl(μ2-O)4}...
Organometallics, Vol. 26, Núm. 17, pp. 4243-4251
2006
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Cationic cyclopentadienyl phenylenediamido titanium species generated by reaction of TiCpR[1,2-C6H4(NCH 2t-Bu)2]R (CpR = η5-C 5H5, η5-C5Me5; R = CH3, CH2Ph) with B(C6F5)3
Organometallics, Vol. 25, Núm. 7, pp. 1723-1727
2005
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Cyclopentadienyl-silyl-amido niobium complexes prepared by a transmetalation reaction using Ti{η5-C5H 4SiMe2-η-N(CH2)2NRR′} Cl2
Organometallics, Vol. 24, Núm. 24, pp. 5853-5857
2004
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Stable methylene- And oxo-bridged monocyclopentadienyl titanium Compounds. Molecular structure of {Ti[μ-(η5-C5Me 4SiMe2-O)]Me}2(μ-CH2)
Organometallics, Vol. 23, Núm. 24, pp. 5873-5876
2003
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Titanium and zirconium chloro, oxo and alkyl derivatives containing silyl-cyclopentadienyl ligands. Synthesis and characterisation
Journal of Organometallic Chemistry, Vol. 683, Núm. 1, pp. 70-76
2002
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Cyclopentadienyl-amido ligands with a pendant "-NHR" amino functionality in titanium chemistry. Molecular structure of [Ti{η5-C5H4SiMe2-η-N(CH 2)2-η-NHCHMe2}Cl2]
Organometallics, Vol. 21, Núm. 11, pp. 2189-2195
2001
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A versatile synthetic route for cyclopentadienyl-amido titanium(IV) compounds. NMR spectroscopy study and X-ray molecular structure of [Ti{η5-C5H4SiMe2 NMe(CH2)2-η-NMe}Cl2]
Organometallics, Vol. 20, Núm. 12, pp. 2459-2467