Guillermo Arturo Muñoz Medina
Guillermo Arturo Muñoz Medina
Doctor de la Facultad de Ciencias Exactas, mención Física.
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Fluorescent and magnetic stellate mesoporous silica for bimodal imaging andmagnetic hyperthermia
DM Francis Perton, Mariana Tasso, Guillermo A. Mu˜noz Medina, Mathilde ...
Applied Materials Today 16, 301-314, 2019
Biocompatible iron–boron nanoparticles designed for neutron capture therapy guided by magnetic resonance imaging
V Torresan, A Guadagnini, D Badocco, P Pastore, GA Muñoz Medina, ...
Advanced Healthcare Materials 10 (6), 2001632, 2021
Anticipating hyperthermic efficiency of magnetic colloids using a semi-empirical model: a tool to help medical decisions
MBF Van Raap, DF Coral, S Yu, GA Muñoz, FH Sánchez, A Roig
Physical Chemistry Chemical Physics 19 (10), 7176-7187, 2017
Dipolar interactions among magnetic dipoles of iron oxide particles dispersed in mili-size hydrogel beads
DG Actis, GAM Medina, AA Velásquez, C Pereda, LM Sanchez, ...
Journal of Magnetism and Magnetic Materials 513, 166993, 2020
Synthesis of highly stable Fe/FeOx@citrate colloids with strong magnetic response by mechanochemistry and coprecipitation for biomedical and environmental applications
DFCDMFHS G.A.Muñoz Medina, M.B.Fernández van Raap
Journal of Magnetism and Magnetic Materials 508 (15), 166759, 2020
Estudio de las Propiedades de Recubrimientos de Hidroxiapatita (HA) Depositados por Proyeccion Térmica por Plasma sobre Ti-6Al-4V
GAM Medina
Journal de Ciencia e Ingenierıa 4 (1), 43-48, 2012
Multitherapy magnetic theranostic: Synthesis, characterization and in vitro evaluation of their performance
MGM Schneider, MF Favatela, GAM Medina, MBF van Raap, VL Lassalle
Colloids and Surfaces B: Biointerfaces 198, 111460, 2021
Gd (OH) 3 as Modifier of Iron Oxide Nanoparticles—Insights on the Synthesis, Characterization and Stability
MG Montiel Schneider, PS Rivero, GA Muñoz Medina, FH Sanchez, ...
Colloids and Interfaces 7 (1), 8, 2023
Assessment of magnetic properties and structural evolution of nanostructured (Fe30Cu70)96B4 alloys
OA Diego Garzón, J.E. Diosa, C. Ostos, Francisco H. Sánchez, Guillermo Muñoz ...
Materials Characterization 111329, 8, 2021
Goethite (α-FeOOH) photocatalytic activity at natural concentrations by the addition of H 2 O 2 at neutral pH and the simultaneous presence of fluoride and bicarbonate.
JA Rengifo-Herrera, JJ Alvear-Daza, J Sanabria, VA Castaño-Rodriguez, ...
Influence of post-pyrolysis treatment on physicochemical properties and acid medium stability of magnetic carbon nanocomposites
AA Burbano, GA Medina, FH Sánchez, VL Lassalle, MF Horst, G Gascó, ...
Biomass Conversion and Biorefinery, 1-14, 2022
Propiedades de ferrofluidos con potencial aplicación biomédica: Preparación, estudio y optimización de su respuesta a campos magnéticos estáticos y alternos
GA Muñoz Medina
Universidad Nacional de La Plata, 2017
Recubrimientos de hidroxiapatita (HA) depositados porproyecci ́on t ́ermica por combusti ́on (PTC)
GA Muñoz Medina
Corporación Universitaria Autónoma del Cauca, 2014
Goethite (α‐FeOOH) photocatalytic activity at natural concentrations by the addition of H2O2 at neutral pH and the simultaneous presence of fluoride and …
JJ Alvear‐Daza, J Sanabria, VA Castaño‐Rodriguez, ...
Applied Research, 0
Synthesis of Core/Shell Fe/Feox@ Cit Colloids: Magnetic Hyperthermia Performance Evaluation
GA Muñoz Medina, P Soto, D Muraca, M Torras, P Setton-Avruj, ...
MAGMA-D-23-00375, 0
Structuring of iron oxides magnetic nanoparticles used in magnetic hyperthermia experiments: effects of size and coating
JA Mera-Córdoba, DF Coral, G Muñoz-Medina, MF Raap
Structuring of magnetic nanoparticles in living cells
DF Coral, GA Muñoz, FH Sánchez, MB Raap, P Soto, P Setton
Designing a SAXS methodology to determine the up-take of magnetic nanoparticles in cell cultures
DF Coral, JA Mera, PA Soto, P Setton, GA Muñoz, FH Sánchez, ...
Multitechnique size determination of Fe/FeOxide@ NaCit magnetic nanoparticles after magnetic separation
GA Medina, IJ Bruvera, MB Van Raap, FH Sánchez, LJ Mendoza, ...
Analyzing the structure factor of nanoparticles internalized by carcinoma cells
DF Coral, PA Soto, GA Muñoz, JA Mera, MBF van Raap
Cell 10, 6, 0
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