EMILIO JOSE
PARDO MARIN
CATEDRÁTICO/A DE UNIVERSIDAD
Universidad Politécnica de Valencia
Valencia, EspañaPublicaciones en colaboración con investigadores/as de Universidad Politécnica de Valencia (23)
2024
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Design of Multivariate Biological Metal-Organic Frameworks: Toward Mimicking Active Sites of Enzymes
Inorganic Chemistry, Vol. 63, Núm. 29, pp. 13681-13688
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Single–atom Cu catalysts for the oxidative coupling of styrenes with aryl sulfones: from salts and zeolites to MOFs
Molecular Catalysis, Vol. 553
2023
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Ag2(0) dimers within a thioether-functionalized MOF catalyze the CO2 to CH4 hydrogenation reaction
Scientific reports, Vol. 13, Núm. 1, pp. 10376
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Degradation of Penicillinic Antibiotics and β-Lactamase Enzymatic Catalysis in a Biomimetic Zn-Based Metal-Organic Framework
Chemistry (Weinheim an der Bergstrasse, Germany), Vol. 29, Núm. 51, pp. e202302315
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Exploring the Role of Amino Acid-Derived Multivariate Metal-Organic Frameworks as Catalysts in Hemiketalization Reactions
Inorganic Chemistry, Vol. 62, Núm. 19, pp. 7353-7359
2022
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Click amidations, esterifications and one–pot reactions catalyzed by Cu salts and multimetal–organic frameworks (M–MOFs)
Molecular Catalysis, Vol. 522
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Highly Efficient MOF-Driven Silver Subnanometer Clusters for the Catalytic Buchner Ring Expansion Reaction
Inorganic chemistry, Vol. 61, Núm. 30, pp. 11796-11802
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Mixed component metal-organic frameworks: Heterogeneity and complexity at the service of application performances
Coordination Chemistry Reviews, Vol. 451
2020
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Hydrolase–like catalysis and structural resolution of natural products by a metal–organic framework
Nature Communications, Vol. 11, Núm. 1
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Metal-Organic Frameworks as Chemical Nanoreactors: Synthesis and Stabilization of Catalytically Active Metal Species in Confined Spaces
Accounts of Chemical Research, Vol. 53, Núm. 2, pp. 520-531
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Publisher Correction: Hydrolase–like catalysis and structural resolution of natural products by a metal–organic framework (Nature Communications, (2020), 11, 1, (3080), 10.1038/s41467-020-16699-3)
Nature Communications
2016
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Selective Gold Recovery and Catalysis in a Highly Flexible Methionine-Decorated Metal-Organic Framework
Journal of the American Chemical Society, Vol. 138, Núm. 25, pp. 7864-7867
2014
2013
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The oxamate route, a versatile post-functionalization for metal incorporation in MIL-101(Cr): Catalytic applications of Cu, Pd, and Au
Journal of Catalysis, Vol. 307, pp. 295-304
2008
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A metallacryptand-based manganese(II)-cobalt(II) ferrimagnet with a three-dimensional honeycomb open-framework architecture
Angewandte Chemie - International Edition, Vol. 47, Núm. 22, pp. 4211-4216
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Rational design of a new class of heterobimetallic molecule-based magnets: Synthesis, crystal structures, and magnetic properties of oxamato-bridged M3′ M2 (M′ = LiI and MnII; M = NiII and CoII) open-frameworks with a three-dimensional honeycomb architecture
Inorganica Chimica Acta, Vol. 361, Núm. 12-13, pp. 3394-3402
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Structure and magnetism of dinuclear copper(II) metallacyclophanes with oligoacenebis(oxamate) bridging ligands: Theoretical predictions on wirelike magnetic coupling
Journal of the American Chemical Society, Vol. 130, Núm. 2, pp. 576-585
2007
2006
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Chemistry and reactivity of dinuclear manganese oxamate complexes: Aerobic catechol oxidation catalyzed by high-valent bis(oxo)-bridged dimanganese(IV) complexes with a homologous series of binucleating 4,5-disubstituted-o-phenylenedioxamate ligands
Journal of Molecular Catalysis A: Chemical, Vol. 250, Núm. 1-2, pp. 20-26
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Chemistry and reactivity of mononuclear manganese oxamate complexes: Oxidative carbon-carbon bond cleavage of vic-diols by dioxygen and aldehydes catalyzed by a trans-dipyridine manganese(III) complex with a tetradentate o-phenylenedioxamate ligand
Journal of Molecular Catalysis A: Chemical, Vol. 243, Núm. 2, pp. 214-220