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Edificio de Ciencia de Materiales, Centro Atómico Bariloche
Av. Bustillo 9500, San Carlos de Bariloche, Río Negro, ZIP code: R8402AGP.
(+54) 0294 444 5147 interno: 5147
Julio César Azcárate
Researcher of CONICET
PhD in Chemistry
miniBio
Julio graduated with a degree in Chemistry in 2009 from the Faculty of Exact Sciences at the National University of La Plata, in the city of La Plata, Buenos Aires province, Argentina. As a doctoral fellow of CONICET, he obtained his PhD in Chemistry from the same faculty in 2014, conducting his thesis work at the Laboratory of Nanoscopies and Surface Physical Chemistry of the Institute of Theoretical and Applied Physicochemical Research (INIFTA), under the supervision of Prof. Dr. Mariano H. Fonticelli and co-supervision of Dr. Elizabeth Jares-Erijman from the Faculty of Exact and Natural Sciences at the University of Buenos Aires (UBA). His thesis titled “Study on the Modification of Metallic Nanoparticles for the Development of Photomodulable Fluorescent Sensors”.
In 2015, Julio joined the Metals Physics Division during his post-doctorate to study “Irradiation Damage in Nanomaterials during their Characterization by Transmission Electron Microscopy (TEM)”, under the supervision of Dr. Eugenia Zelaya.
In 2016, he became a permanent member of the group as a CONICET Researcher. His scientific interests focus on the study of the structure and properties of nanomaterials, with emphasis on the characterization of the defects produced by ion irradiation and their influence on the properties of the materials. He has been involved in the development of new techniques for the characterization of nanomaterials, such as the use of electron microscopy to study the structure of materials at the atomic scale, and the use of synchrotron radiation to study the electronic structure of materials.
research lines
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Radiation Damage in Metallic Nanoparticles
The aim of this research line is to understand the mechanisms of radiation
publications
2021
- Unraveling the Radiation Damage of \textitn -Dodecanethiol Self-Assembled Monolayers on Au(100) and Au(111): A Prerequisite to Understand the Oriented Attachment of Au NanoparticlesJ. Phys. Chem. C, Dec 2021
2020
- Mechanistic Framework for the Formation of Different Sulfur Species by Electron Irradiation of n -Dodecanethiol Self-Assembled Monolayers on Au(111) and Au(100)J. Phys. Chem. C, Dec 2020
- HRTEM Characterization and Simulation of Ag NanoplatesIn Microscopy and Microanalysis, Mar 2020Issue: S1
2019
- Atomic Sulfur Formation Mechanism on 3-Mercaptopropanoic Acid Derivative Self-Assembled Monolayers: Understanding the C–S Bond CleavageJ. Phys. Chem. C, Oct 2019Publisher: American Chemical Society (ACS)
2017
- Radiation Damage Mechanisms of Monolayer-Protected Nanoparticles via TEM AnalysisJ. Phys. Chem. C, Nov 2017
2014
- Estudio sobre la modificación de nanopartículas metálicas para el desarrollo de sensores fluorescentes fotomodulablesNov 2014
- Surface Chemistry of Thiomalic Acid Adsorption on Planar Gold and Gold NanoparticlesLangmuir, Feb 2014
2024
- Catalytic Performance in Nitroarene Reduction of Nanocatalyst Based on Noble Metal Nanoparticles Supported on Polymer/s-Layer Protein HybridsJ. Phys. Chem. B, Apr 2024
2022
- Magnetic Nanoparticle–Polymer Composites Loaded with Hydrophobic Sensitizers for Photodegradation of Azoic DyesACS Appl. Nano Mater., May 2022
2021
- Photothermal therapy with silver nanoplates in HeLa cells studied by \textitin situ fluorescence microscopyBiomater. Sci., May 20210 citations (Crossref) [2021-05-10]
- Hydrophilization of magnetic nanoparticles with an amphiphilic polymer revisited: Roles of nanoparticle capping density and polymer structureApplied Surface Science, Dec 2021
- Unraveling the Radiation Damage of \textitn -Dodecanethiol Self-Assembled Monolayers on Au(100) and Au(111): A Prerequisite to Understand the Oriented Attachment of Au NanoparticlesJ. Phys. Chem. C, Dec 2021
2020
- Mechanistic Framework for the Formation of Different Sulfur Species by Electron Irradiation of n -Dodecanethiol Self-Assembled Monolayers on Au(111) and Au(100)J. Phys. Chem. C, Dec 2020
- HRTEM Characterization and Simulation of Ag NanoplatesIn Microscopy and Microanalysis, Mar 2020Issue: S1
- Sodium Hexametaphosphate: An Inexpensive Inorganic Polyelectrolyte “Primer” For Upconverting Nanoparticles/Mesoporous Silica Core‐Shell SynthesisChemistrySelect, May 2020
- Noble metal nanoparticles-based heterogeneous bionano-catalysts supported on S-layer protein/polyurethane systemCatalysis Today, Sep 20201 citations (Crossref) [2021-01-25]
2019
- Atomic Sulfur Formation Mechanism on 3-Mercaptopropanoic Acid Derivative Self-Assembled Monolayers: Understanding the C–S Bond CleavageJ. Phys. Chem. C, Oct 2019Publisher: American Chemical Society (ACS)
2018
- Photodynamic Therapy in HeLa Cells Incubated with Riboflavin and Pectin-coated Silver NanoparticlesPhotochemistry and Photobiology, Nov 2018
2017
- Radiation Damage Mechanisms of Monolayer-Protected Nanoparticles via TEM AnalysisJ. Phys. Chem. C, Nov 2017
2014
- Estudio sobre la modificación de nanopartículas metálicas para el desarrollo de sensores fluorescentes fotomodulablesNov 2014
- Surface Chemistry of Thiomalic Acid Adsorption on Planar Gold and Gold NanoparticlesLangmuir, Feb 2014