Francisco J Poblete

@uclm.es

Titular de universidad
Universidad de Castilla la Mancha

RESEARCH, TEACHING, or OTHER INTERESTS

Chemistry, Physical and Theoretical Chemistry, Environmental Chemistry
29

Scopus Publications

Scopus Publications

  • Aqueous-Phase Degradation Mechanism of Parabens, Emerging Contaminants, by Peroxynitrite
    Clara I. Alcolado, Elena Jiménez, Luis García-Río, Francisco J. Poblete
    ACS Es and T Water, 2025
    High Resolution Image Download MS PowerPoint Slide Advances in science and technology have improved the quality of life but have also contributed to environmental pollution through additives like parabens, commonly used as preservatives in personal care products. This study investigates the degradation of a series of parabens (methylparaben, ethylparaben, propylparaben, and butylparaben) in aqueous-phase solution initiated by peroxynitrous acid (HOONO), an oxidant present in environmental waters. A stopped flow system was employed to follow this oxidation reaction. A reaction mechanism, considering experimental variables, such as pH, temperature, ionic strength, radical scavengers, and reaction products detected, was proposed. This mechanism involves two competitive pathways: a radical attack producing hydroquinone and quinone and a nucleophilic attack by HOONO yielding p -hydroxybenzoic acid, a less ecotoxic compound than parabens. The acidic equilibrium constants of the carbonyl group of parabens and the rate constants for the nucleophilic attack of HOONO on parabens were experimentally determined. Additionally, a structure–reactivity correlation analysis (QSAR) through the Taft equation was applied for the determined equilibrium and nucleophilic attack rate constants. The derived QSAR can be applied to other water-soluble parabens.
  • Aromatic aldehyde oxidation by hexacyanoferrate(III) catalyzed by Ru(VI) in alkaline medium
    C.I. Alcolado, J. Poblete, L. García-Río, E. Jiménez, F.J. Poblete
    Journal of Molecular Liquids, 2024
    In this study, the selective oxidation of aromatic aldehydes has been investigated using Ru(VI) as a catalyst and hexacyanoferrate (III) as a cooxidant in an alkaline medium. The reaction order with respect to the oxidant and the aromatic aldehyde is complex while the reaction order with respect to Ru(VI) is one. The proposed mechanism presents two catalytic cycles for the two active species of the catalyst. In each cycle, Ru(VI) species forms a complex with the anion of hydrated benzaldehyde which decomposes to form benzoic acid. The function of hexacyanoferrate(III) is the regeneration of catalyst species. A quantitative structure–activity relationship was analyzed using the Hammett equation for decomposition complex step. This analysis showed that deactivating groups in para- position enhances this process.
  • Oxidation of Aldehydes Used as Food Additives by Peroxynitrite
    Clara I. Alcolado, Luis Garcia-Rio, Juan C. Mejuto, Inmaculada Moreno, Francisco J. Poblete, et al.
    Antioxidants, 2023
    Benzaldehyde and its derivatives are used as food supplements. These substances can be used mainly as flavorings or as antioxidants. Besides, peroxynitrite, an oxidizing agent, could be formed in canned food. Both species could react between them. The present article has focused on the kinetic study of the oxidation of aldehydes by peroxynitrite. A reaction mechanism that justifies all the experimental results is proposed. This mechanism, in acidic media, passes through three competitive pathways: (a) a radical attack that produces benzoic acid. (b) peracid oxidation, and (c) a nucleophilic attack of peroxynitrous acid over aldehyde to form an intermediate, X, that produces benzoic acid, or, through a Cannizzaro-type reaction, benzoic acid and benzyl alcohol. All rate constants involved in the third pathway (c) have been calculated. These results have never been described in the literature in acid media. A pH effect was analyzed.
  • Quantitative Structure-Activity Relationships in alcohols oxidation using Ru(III) or Ru(VI)
    Esther Cayuela, Luis García-Río, Inmaculada Moreno, Francisco J. Poblete
    Journal of Molecular Liquids, 2019
  • Archaeometric characterization of the ceramics from two celtiberian hillforts: Preliminary results
    Álvaro Sánchez Climent, Carlos J. Sánchez Jiménez, F. J. Poblete, María Luisa Cerdeño Serrano
    Mediterranean Archaeology and Archaeometry, 2018
    In this work, we present the preliminary results of the archaeometric analysis of several ceramic and clay samples from two Celtiberian hillforts of the Iron Age from the Spanish Central Plateau: El Ceremeño and its cemetery (Early and Middle Iron Age) and the oppidum of Los Rodiles (Late Iron Age) including La Rodriga, a potter's workshop contemporary to Los Rodiles. Clay samples were collected from all sites in order to carry out a provenance analysis and to determine if the ceramic production of the proposed archaeological sites was local or foreign. Mineralogical analysis was performed by Thin-Layer Petrography (TLP) and XRay Diffraction (XRD), whereas chemical analysis was done by X-Ray Fluorescence: Semi-quantitative (XRF) and Trace Elemental analysis (XRF-t). Moreover, to complete the study a thermal analysis was carried out by a dilatometer (DLT). Although the number of samples evaluated was limited, in all the studied cases, the analyzed pottery was clearly found to be made with the clay from the surroundings of the archaeological sites.
  • Electrostatic repulsion between cucurbit[7]urils can be overcome in [3]pseudorotaxane without adding salts
    M. Pessêgo, J. A. Moreira, A. M. Rosa da Costa, P. Corrochano, F. J. Poblete, et al.
    Journal of Organic Chemistry, 2013
    The host-guest chemistry between cucurbit[7]uril (CB7) and a series of bolaform (Bn) surfactants with different chain lengths, n = 12-22, was the target of our study. [3]Pseudorotaxanes are formed when the alkyl chain of the bolaform has more than 14 carbon atoms. In these cases, two CB7 molecules can be accommodated between the two head groups of the bolaform without addition of electrolytes to the medium. In the case of a bolaform with 12 carbon atoms, the electrostatic repulsion between the carbonyl groups of the CB7 molecules avoids the threading of a second CB7 molecule yielding a mixed structure formed by a [2]pseudorotaxane and an external host-guest complex. The assembly behavior was investigated using NMR spectroscopy, isothermal titration calorimetry (ITC), and kinetic measurements.
  • Alcohol oxidation catalysed by Ru(VI) in the presence of alkaline hexacyanoferrate(III)
    Francisco J. Poblete, Pablo Corrochano
    Journal of Physical Organic Chemistry, 2010
    The oxidation of sodium lactate, 2‐methyl‐2,4‐pentanediol, 2,4‐butanediol, 2‐butanol and 2‐propanol upon treatment with alkaline hexacyanoferrate(III) using a Ru(VI) catalyst is highly effective for the oxidation of alcohols by ${\rm Fe}({\rm CN})_{6}^{3{-} }$ . The reaction mechanism proposed involves the oxidation of the alcohol by the catalyst, a process that occurs through the formation of a substrate‐catalyst complex. The decomposition of this complex yields Ru(IV) and a carbocation (owing to a hydride transfer from the α‐CH bond of the alcohol to the oxoligand of ruthenium). The role of the co‐oxidant, hexacyanoferrate(III), is to regenerate the catalyst. In the oxidation reactions, the rate constants for complex decomposition and catalyst regeneration have been determined and a comparative study of the structure versus reactivity has been carried out. Copyright © 2010 John Wiley & Sons, Ltd.
  • Spontaneous cyclo-trimerization of propionaldehyde in aqueous solution
    Pablo Corrochano, Luis García-Río, Francisco Javier Poblete, Pedro Rodríguez-Dafonte
    Tetrahedron Letters, 2010
  • Kinetic study of Orange II oxidation using peroxynitrous acid
    F. J. Poblete, P. Corrochano, B. Cabañas
    Journal of Physical Organic Chemistry, 2009
    The reaction of Orange II with peroxynitrous acid has been studied by a spectrophotometrical method. The reaction rate is complex because the order changes from zero to one in function of substrate and oxidant concentration. The influence of pH and ionic strength has been investigated, but their effect on the reaction rate appears to be negligible under the experimental conditions used. A reaction mechanism based on the experimental results is proposed, involving a radical cage solvent attack from peroxynitrous acid to Orange II. Copyright © 2009 John Wiley & Sons, Ltd.
  • Synthesis and swelling behaviour of poly(sodium acrylate)/sepiolite superabsorbent composites and nanocomposites
    Francisca Santiago, Antonio E Mucientes, Mónica Osorio, Francisco J Poblete
    Polymer International, 2006
    A series of novel composites and nanocomposites xerogels based on acrylic acid, sepiolite and N , N ′‐methylenebisacrylamide were prepared using a solution polymerization technique at 70 °C. The quality of dispersion of the micronized sepiolite in the monomer is the crucial point for obtaining nanocomposites. A good dispersion explains the improvement of the absorbent properties of the nanocomposites with respect to the composites. This work investigates not only the influence of the mixing procedure on the swelling behaviour, but also the effect of the amount of clay on the absorbency of these hydrogels in deionized water and saline solution (0.2 wt% NaCl (aq) ). A crosslinker concentration of 5 wt% sepiolite nanocomposite superabsorbent was shown to give the best results (1419 g g −1 ). Moreover, experimental results indicate that the absorbency in saline solution is smaller than that in deionized water. Rates of swelling for these absorbents were found to fit the Voigt expression. Finally, the model approximates Case II sorption in the early stages of the swelling process and Case I in the later stages. Copyright © 2006 Society of Chemical Industry
  • Oxidation of 2,3-butanediol by alkaline hexacyanoferrate(III) using Ru(III) or Ru(VI) as catalyst
    F. J. Poblete, A. E. Mucientes, S. Villarreal, F. Santiago, B. Cabañas, et al.
    Journal of Physical Organic Chemistry, 2006
  • Ruthenium arene derivatives with PN hemilabile ligands. P-C cleavage and phosphine to phosphinite transformation
    Agustín Caballero, Félix A. Jalón, Blanca R. Manzano, Gustavo Espino, Mercedes Pérez-Manrique, et al.
    Organometallics, 2004
  • Catalytic effect of CO2 on peroxynitrite decomposition in the presence of cyanide complexes
    Ernesto Martínez, Antonio E. Mucientes, Francisco J. Poblete, Ana Rodríguez
    Reaction Kinetics and Catalysis Letters, 2004
  • Oxidation of hexacyanoferrate(II) by peroxynitrite. A mechanistic and kinetic study
    Polish Journal of Chemistry, 2004
  • Kinetics and mechanism of octacyanomolybdate(IV) oxidation by peroxynitrite
    A.E. Mucientes, A. Rodríguez, F.J. Poblete
    Journal of Chemical Research, 2004
  • Comparative study of the catalytic behaviour of Ru(III) and Ru(VI) on the oxidation of alcohols by hexacyanoferrate(III)
    A. E. Mucientes, R. E. Gabaldón, F. J. Poblete, S. Villarreal
    Journal of Physical Organic Chemistry, 2004
  • Kinetic study of the ruthenium (VI)-catalyzed oxidation of benzyl alcohol by alkaline hexacyanoferrate(III)
    A. E. Mucientes, F. Santiago, M. C. Almena, F. J. Poblete, A. M. Rodriguez‐Cervantes
    International Journal of Chemical Kinetics, 2002
  • Kinetic study of ruthenium (VI)-catalyzed oxidation of 2-propanol by alkaline hexacyanoferrate (III)
    A. E. Mucientes, F. J. Poblete, M. A. Rodríguez, F. Santiago
    Journal of Physical Organic Chemistry, 1999
  • Kinetic study of ruthenium(VI)-catalyzed oxidation of 2-butanol by alkaline hexacyanoferrate(III)
    A. E. Mucientes, F. J. Poblete, D. Rodriguez, M. A. Rodriguez, F. Santiago
    International Journal of Chemical Kinetics, 1999
  • Kinetic Study of Ruthenium(III)-catalysed Oxidation of 2-Methylpentane-2,4-diol by Alkaline Hexacyanoferrate(III)
    Antonio E. Mucientes, Francisco J. Poblete, Rafael E. Gabaldon, Maria A. Rodriguez, Francisca Santiago
    Journal of Chemical Research Part S, 1998
  • Laser-induced fluorescence from selected excited states of the CS2 molecule
    E. Martínez, M.R. López, J. Albaladejo, F. Poblete
    Journal of Molecular Structure, 1997
  • Study of a calcium afterglow in a broida oven
    F. Fethi, M. Bourgoin, F. Poblete, G. Taieb
    Journal De Physique I, 1997
  • Kinetics and mechanism of ruthenium(III) catalyzed oxidation of ethane-1,2-diol by alkaline hexacyanoferrate(III)
    AE Mucientes, FJ Poblete, F Santiago, MA Rodriguez
    Journal De Chimie Physique Et De Physico Chimie Biologique, 1997
  • Kinetic study of the oxidation of propan-1-ol by alkaline hexacyanoferrate(III) catalyzed by ruthenium trichloride
    A. E. Mucientes, F. J. Poblete, M. A. Rodriguez, F. Santiago
    Journal of Physical Organic Chemistry, 1997
  • Kinetics and mechanism of the ruthenium(III) catalyzed oxidation of propane-1,3-diol by alkaline hexacyanoferrate(III)
    A. E. Mucientes, F. J. Poblete, F. Santiago, J. Casado
    Reaction Kinetics and Catalysis Letters, 1997
  • Reaction cross sections of Ca (41S, 43P and 31D states) with halogenated compounds and water
    F. Fethi, F. Poblete, E. Martinez, A. Gonzalez Urena, G. Taieb
    Laser Chemistry, 1996
  • The A(0+)-X(0+) transition of BiBr: radiative lifetimes of the A state
    E. Martínez, M.R. López, A. Notario, F. Poblete
    Chemical Physics, 1995
  • Reaction dynamics of electronically excited calcium atom
    E. Verdasco, M. Menéndez, M. Garay, A. González Ureña, O. Benoist D′azy, et al.
    Laser Chemistry, 1992
  • Kinetic study of the permanganate oxidation of DL-valine in acidic media
    A. Mucientes, F. J. Poblete, J. Casado
    Reaction Kinetics Catalysis Letters, 1991