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Paula Montoya

Researcher at University of Antioquia

Publications -  19
Citations -  302

Paula Montoya is an academic researcher from University of Antioquia. The author has contributed to research in topics: Conductive polymer & Nanoparticle. The author has an hindex of 8, co-authored 19 publications receiving 237 citations.

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An study on accelerated corrosion testing of weathering steel

TL;DR: In this article, the use of wet/dry cyclic laboratory corrosion tests that can provide information on the protective capacity of weathering steels in short times was assessed. But the results were limited to two steels, a weathering steel ASTM A 242 Type 1 and a plain carbon steel.
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Influence of Surface Treatment on Magnetic Properties of Fe3O4 Nanoparticles Synthesized by Electrochemical Method.

TL;DR: The changes of magnetic properties in magnetite nanoparticles during two different stabilization processes were investigated and showed that the uncoated and coated MNPs had a narrow size distribution and the saturation magnetization values showed dependence on the magnetite synthesis conditions and surface modifiers.
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Development of magnetite nanoparticles/gelatin composite films for triggering drug release by an external magnetic field

TL;DR: In this article, magnetite nanoparticles/gelatin composite (gelatin/NPs) with a magnetic response allowing controlled drug release by an external magnetic field were developed. But the results showed that gelatin composite films do not exhibit a high oxidation level of the nanoparticles contained in the gelatin matrix.
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Synthesis of polypyrrole-magnetite/silane coatings on steel and assessment of anticorrosive properties

TL;DR: In this article, a detailed study of the synthesis of polypyrrole-magnetite/silane coatings (PPy-Fe3O4/GPTMS-TEOS-γ-APS) and their anticorrosion properties is presented.
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Evidence of redox interactions between polypyrrole and Fe3O4 in polypyrrole–Fe3O4 composite films

TL;DR: In this paper, the effect of the magnetite particles on the structure of the polymer matrix was determined using Raman spectroscopy, and the changes in the resistance of the films were evaluated over time by electrochemical impedance spectroscopic in solid state.