Colloidal Flower-Shaped Iron Oxide Nanoparticles: Synthesis Strategies and Coatings

التفاصيل البيبلوغرافية
العنوان: Colloidal Flower-Shaped Iron Oxide Nanoparticles: Synthesis Strategies and Coatings
المؤلفون: Gavilán, Helena, Kowalski, Anja, Heinke, David, Sugunan, Abhilash, Sommertune, Jens, Varón, Miriam, Bogart, Lara K., Posth, Oliver, Zeng, Lunjie, González-Alonso, David, Balceris, Chrsitoph, Fock, Jeppe, Wetterskog, Erik, Frandsen, Cathrine, Gehrke, Nicole, Grüttner, Cordula, Fornara, Andrea, Ludwig, Frank, Veintemillas-Verdaguer, Sabino, Johansson, Christer, Morales, M. Puerto
المصدر: Particle & particle systems characterization. 34(7)
مصطلحات موضوعية: colloids, magnetic properties, magnetite, nanoflowers, self-assembly, Association reactions, Iron, Iron compounds, Iron oxides, Magnetic cores, Magnetism, Nanoparticles, Self assembly, Synthesis (chemical), Inter-particle interaction, Iron acetylacetonate, Iron oxide nanoparticle, Long term stability, Polyol-mediated synthesis, Self assembly process, Synthesis and characterizations, Synthesis parameters, Nanomagnetics
الوصف: The assembly of magnetic cores into regular structures may notably influence the properties displayed by a magnetic colloid. Here, key synthesis parameters driving the self-assembly process capable of organizing colloidal magnetic cores into highly regular and reproducible multi-core nanoparticles are determined. In addition, a self-consistent picture that explains the collective magnetic properties exhibited by these complex assemblies is achieved through structural, colloidal, and magnetic means. For this purpose, different strategies to obtain flower-shaped iron oxide assemblies in the size range 25–100 nm are examined. The routes are based on the partial oxidation of Fe(OH)2, polyol-mediated synthesis or the reduction of iron acetylacetonate. The nanoparticles are functionalized either with dextran, citric acid, or alternatively embedded in polystyrene and their long-term stability is assessed. The core size is measured, calculated, and modeled using both structural and magnetic means, while the Debye model and multi-core extended model are used to study interparticle interactions. This is the first step toward standardized protocols of synthesis and characterization of flower-shaped nanoparticles.
وصف الملف: print
الوصول الحر: https://urn.kb.se/resolve?urn=urn:nbn:se:ri:diva-30284Test
قاعدة البيانات: SwePub
الوصف
تدمد:09340866
15214117
DOI:10.1002/ppsc.201700094