Publications
Understanding the structural and magnetic evolution of superparamagnetic Zn ferrites nanoparticles synthesized by an easy electrochemical process
J ALLOY COMPD, 881, 160585, (2021) 4 cit.
DOI →YBaCuO-type perovskites as potential air electrodes for SOFCs. The case of YSr2Cu2FeO7+δ
J Mater Chem A, 9, 8554, (2021) 7 cit.
DOI →Fenton-like degradation enhancement of methylene blue dye with magnetic heating induction
J ELECTROANAL CHEM, 879, 114773, (2020) 50 cit.
DOI →Hydride-Reduced Eu2SrFe2O6: A T-to-T' Conversion Enabling Fe2+ in Square-Planar Coordination
INORG CHEM, 59, 12913, (2020) 3 cit.
DOI →New insights into the structural analysis of maghemite and (MFe2O4, M = Co, Zn) ferrite nanoparticles synthesized by a microwave-assisted polyol process
MATERIALS CHEMISTRY FRONTIERS, 4, 3063, (2020)
DOI →Recent advances of Fe-N-C pyrolyzed catalysts for the oxygen reduction reaction
CURRENT OPINION IN ELECTROCHEMISTRY, 23, 154, (2020)
DOI →Tunneling the size of iron oxide NPs using different alcohols and proportions water-alcohol
Adv Nano Res, 8, 95, (2020) 3 cit.
DOI →Effect of the Surface Charge on the Adsorption Capacity of Chromium(VI) of Iron Oxide Magnetic Nanoparticles Prepared by Microwave-Assisted Synthesis
WATER, 11, 2372, (2019)
DOI →Electrochemical Synthesis and Magnetic Properties of MFe2O4 (M = Fe, Mn, Co, Ni) Nanoparticles for Potential Biomedical Applications
J NANOSCI NANOTECHNO, 19, 2008, (2019) 21 cit.
DOI →Improvement in Heavy Metal Removal from Wastewater Using an External Magnetic Inductor
Nanomaterials, 9, 1508, (2019) 30 cit.
DOI →Soft Magnetic Switching in a FeSr2YCu2O7.85 Superconductor with Unusually High Iron Valence
INORG CHEM, 58, 12809, (2019) 8 cit.
DOI →Toxicity and biodegradation of zinc ferrite nanoparticles in Xenopus laevis
J NANOPART RES, 21, 181, (2019) 12 cit.
DOI →Cation distribution of cobalt ferrite electrosynthesized nanoparticles. A methodological comparison
J ALLOY COMPD, 739, 909, (2018) 33 cit.
DOI →Comparative Studies of Oxidation Processes on Group 10 Metals Dithiolene Derivatives in the Formation of Coordination Polymers
CRYST GROWTH DES, 18, 2486, (2018) 3 cit.
DOI →Compositional Tuning of Light-to-Heat Conversion Efficiency and of Optical Properties of Superparamagnetic Iron Oxide Nanoparticles
J PHYS CHEM C, 122, 16389, (2018) 13 cit.
DOI →Design, Construction and Evaluation of a 3D Printed Electrochemical Flow Cell for the Synthesis of Magnetite Nanoparticles
J ELECTROCHEM SOC, 165, H688, (2018) 23 cit.
DOI →Electrocatalytic Activity of Nanohybrids Based on Carbon Nanomaterials and MFe2O4 (M=Co, Mn) towards the Reduction of Hydrogen Peroxide
ELECTROANAL, 30, 1613, (2018) 8 cit.
DOI →Fluorinated tin oxide (FTO) deposited at room temperature: Influence of hydrogen and oxygen in the sputtering gas on the optical and electrical properties
APPL SURF SCI, 459, 349, (2018) 12 cit.
DOI →Hybrid nanoparticles for magnetic and plasmonic hyperthermia
PHYS CHEM CHEM PHYS, 20, 24065, (2018) 28 cit.
DOI →Microstructural and magnetic characterization of Fe- and Ir-based multilayers
Phys Rev Materials, 2, 014402, (2018) 5 cit.
DOI →Natural liquid-extract of morinda citrifolia as corrosion inhibitor for steels (AISI-1045) exposed to acidic environments of HCl
REVISTA DE METALURGIA, 54, e128, (2018)
DOI →Natural liquid-extract of morinda citrifolia as corrosion inhibitor for steels (AISI-1045) exposed to acidic environments of HCl
REV METAL MADRID, 54, e128, (2018) 5 cit.
DOI →Synthesis of hybrid magneto-plasmonic nanoparticles with potential use in photoacoustic detection of circulating tumor cells
MICROCHIM ACTA, 185, 130, (2018) 24 cit.
DOI →Application of a modified flow-type microcell to evaluate local mass transport coefficients
J SOLID STATE ELECTR, 21, 3345, (2017) 3 cit.
DOI →Colloidal Nanoparticle Clusters to produce large FePt nanocrystals
MATER DESIGN, 113, 391, (2017) 5 cit.
DOI →Crystal structure and magnetic properties of high Mn-doped strontium hexaferrite
J ALLOY COMPD, 695, 2083, (2017) 68 cit.
DOI →Giant direct and inverse magnetocaloric effect linked to the same forward martensitic transformation
Sci Rep, 7, 13328, (2017) 21 cit.
DOI →Magnetic clusters on the verge of long range ferromagnetism in Lu(Fe0.75Al0.25)2 and Lu(Fe0.50Al0.50)2 alloys
J ALLOY COMPD, 695, 704, (2017) 4 cit.
DOI →Magnetite as a platform material in the detection of glucose, ethanol and cholesterol
SENSOR ACTUAT B-CHEM, 238, 693, (2017) 28 cit.
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