Dieric S. Abreu
Federal University of Ceará
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Publication
Featured researches published by Dieric S. Abreu.
Angewandte Chemie | 2015
Catherine R. DeBlase; Kenneth Hernández-Burgos; Julian M. Rotter; David J. Fortman; Dieric S. Abreu; Ronaldo A. Timm; Izaura C.N. Diógenes; Lauro T. Kubota; Héctor D. Abruña; William R. Dichtel
Porous polymer networks (PPNs) are attractive materials for capacitive energy storage because they offer high surface areas for increased double-layer capacitance, open structures for rapid ion transport, and redox-active moieties that enable faradaic (pseudocapacitive) energy storage. Here we demonstrate a new attractive feature of PPNs--the ability of their reduced forms (radical anions and dianions) to interact with small radii cations through synergistic interactions arising from densely packed redox-active groups, only when prepared as thin films. When naphthalene diimides (NDIs) are incorporated into PPN films, the carbonyl groups of adjacent, electrochemically generated, NDI radical anions and dianions bind strongly to K(+), Li(+), and Mg(2+), shifting the formal potentials of NDIs second reduction by 120 and 460 mV for K(+) and Li(+)-based electrolytes, respectively. In the case of Mg(2+), NDIs two redox waves coalesce into a single two-electron process with shifts of 240 and 710 mV, for the first and second reductions, respectively, increasing the energy density by over 20 % without changing the polymer backbone. In contrast, the formal reduction potentials of NDI derivatives in solution are identical for each electrolyte, and this effect has not been reported for NDI previously. This study illustrates the profound influence of the solid-state structure of a polymer on its electrochemical response, which does not simply reflect the solution-phase redox behavior of its monomers.
Chemistry: A European Journal | 2016
Adolfo Ignacio Barros Romo; Dieric S. Abreu; Tércio de F. Paulo; Marta S. P. Carepo; Eduardo Henrique Silva Sousa; Luis Lemus; Carolina Aliaga; Alzir A. Batista; Otaciro R. Nascimento; Héctor D. Abruña; Izaura C.N. Diógenes
Coordination compounds of copper have been invoked as major actors in processes involving the reduction of molecular oxygen, mostly with the generation of radical species the assignment for which has, so far, not been fully addressed. In the present work, we have carried out studies in solution and on surfaces to gain insights into the nature of the radical oxygen species (ROS) generated by a copper(II) coordination compound containing a thioether clip-phen derivative, 1,3-bis(1,10-phenanthrolin-2-yloxy)-N-(4-(methylthio)benzylidene)propan-2-amine (2CP-Bz-SMe), enabling its adsorption/immobilization to gold surfaces. Whereas surface plasmon resonance (SPR) and electrochemistry of the adsorbed complex indicated the formation of a dimeric Cu(I) intermediate containing molecular oxygen as a bridging ligand, scanning electrochemical microscopy (SECM) and nuclease assays pointed to the generation of a ROS species. Electron paramagnetic resonance (EPR) data reinforced such conclusions, indicating that radical production was dependent on the amount of oxygen and H2 O2 , thus pointing to a mechanism involving a Fenton-like reaction that results in the production of OH(.) .
Journal of Agricultural and Food Chemistry | 2017
Maria A. S. da Silva; Dieric S. Abreu; Leandro Araujo da Costa; Natanna de A. Aguiar; Tércio de F. Paulo; Elisane Longhinotti; Izaura C.N. Diógenes
Hybrid organic-inorganic materials have been seen as a promising approach to produce sensors for the detection and/or recognition of heterocyclic aromatic amines (HAAs). This work shows the synthesis of a hybrid film as a result of the incorporation of [Fe(CN)5(NH3)]3- into chitosan (CS); CS-[(CN)5Fe(NH3)]3-. The sensitivity of CS-[(CN)5Fe(NH3)]3- toward HAA-like species was evaluated by using pyrazine (pz) as probe molecule in vapor phase by means of electrochemistry and spectroscopic techniques. The crystallinity (SEM-EDS and XRD) decrease of CS-[(CN)5Fe(NH3)]3- in comparison to CS was assigned to the disturbance of the hydrogen bond network within the polymer. Such conclusion was reinforced by the water contact angle measurements. The results presented in this work indicate physical and intermolecular interactions, mostly hydrogen bond, between [Fe(CN)5(NH3)]3- and CS, where the complex is likely trapped in the polymer with its sixth coordination site available for substitution reactions.
Journal of Inorganic Biochemistry | 2018
Maria A. S. da Silva; Adolfo Ignacio Barros Romo; Dieric S. Abreu; Marta S. P. Carepo; Luis Lemus; Miguel Jafelicci; Tércio de F. Paulo; Otaciro R. Nascimento; Esteban Vargas; J.C. Denardin; Izaura C.N. Diógenes
Magnetic nanoparticles have been extensively explored for the development of platforms for drug delivery and imaging probes. In this work, we have used a modular capping strategy to produce magnetic gold-coated Fe3O4 (Fe3O4@Au) nanoparticles, which have been decorated with a copper (II) complex containing a thioether derivative of clip-phen (Fe3O4@Au@Cu), where the complex [Cu(2CP-Bz-SMe)]2+ has affinity to bind DNA and proven nuclease activity (2CP-Bz-SMe=1,3-bis((1,10-phenanthrolin-2-yl)oxy)-N-(4-(methylthio)benzylidene)propan-2-imine). The functionalization of Fe3O4@Au with the copper complex occurs through the sulfur atom of the thioether moiety, as indicated by Raman scattering on surface. The magnetic measurements showed the nanomaterial Fe3O4@Au@Cu is still magnetic although the gold shell and the functionalization with the copper complex have diminished the magnetization due to the dilution of the magnetic core. The nuclease assays performed with Fe3O4@Au@Cu indicate that the nuclease activity of the nanomaterial toward the plasmid DNA involves an oxidative pathway in which H2O2 species is involved as intermediate in a Fenton-like reaction. Based on the electron paramagnetic resonance spectra (aN = 15.07 G, aH = 14.99 G), such nuclease activity is assigned, essentially, to the HO species indicating that the radical production property of [Cu(2CP-Bz-SMe)]2+ is successfully transferred to the core-shell gold-coated Fe3O4 magnetic nanoparticles. To the best of our knowledge, this is the first study reporting nuclease activity due to the reactive oxygen species generated by a copper complex immobilized on a gold-coated magnetic nanoparticle.
Journal of Physical Chemistry C | 2014
Dieric S. Abreu; Tércio de F. Paulo; Rômulo A. Ando; Marcia L. A. Temperini; E.A. Batista; Elisane Longhinotti; Izaura C.N. Diógenes
Electrochimica Acta | 2014
Dieric S. Abreu; Tércio de F. Paulo; Marcia L. A. Temperini; Izaura C.N. Diógenes
Journal of Physical Chemistry C | 2018
Dieric S. Abreu; Marcia L. A. Temperini; Héctor D. Abruña; Izaura C.N. Diógenes
Encontros Universitários da UFC | 2017
Leandro Araujo da Costa; Maria A. S. da Silva; Adolfo Ignacio Barros Romo; Dieric S. Abreu; Marta S. P. Carepo; Izaura C.N. Diógenes
Encontros Universitários da UFC | 2017
Vitoria Soares Dibo; Dieric S. Abreu; Izaura C.N. Diógenes
Electrochimica Acta | 2017
Dieric S. Abreu; Ticyano P. de Sousa; Caio B. Castro; Mayara N.V. Sousa; Thiago T. Silva; Francisco W.Q. Almeida-Neto; Marcos Vinícius A. Queirós; Bárbara S.F. Rodrigues; Maria da Conceição F. de Oliveira; Tércio de F. Paulo; Benildo Sousa Cavada; Kyria S. Nascimento; Marcia L. A. Temperini; Izaura C.N. Diógenes