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This set of data complements the published article "Experimental and Modelling Analysis of the Hyperthermia Properties of Iron Oxide Nanocubes" published on Nanomaterials https://doi.org/10.3390/nano11092179 Ferrero, R.; Barrera, G.; Celegato, F.; Vicentini, M.; Sözeri, H.; Yıldız, N.; Atila Dinçer, C.; Coïsson, M.; Manzin, A.; Tiberto, P. Experimental and Modelling Analysis of the Hyperthermia Properties of Iron Oxide Nanocubes. Nanomaterials 2021, 11, 2179. https://doi.org/10.3390/nano11092179
{"references": ["Ferrero, R.; Barrera, G.; Celegato, F.; Vicentini, M.; S\u00f6zeri, H.; Y\u0131ld\u0131z, N.; Atila Din\u00e7er, C.; Co\u00efsson, M.; Manzin, A.; Tiberto, P. Experimental and Modelling Analysis of the Hyperthermia Properties of Iron Oxide Nanocubes. Nanomaterials 2021, 11, 2179. https://doi.org/10.3390/nano11092179"]}
This research was developed in the framework of Project 18HLT06 RaCHy, which has received funding from the European Metrology Programme for Innovation and Research (EMPIR), co-financed by the participating states, and from the European Union's Horizon 2020 Programme. (https://rachy-project.eu/)
magnetic nanoparticles, iron oxide, magnetometry, micromagnetic simulations, Specific Loss Power, dataset, magnetic hyperthermia, thermal simulations, thermometric measurements, nanocubes
magnetic nanoparticles, iron oxide, magnetometry, micromagnetic simulations, Specific Loss Power, dataset, magnetic hyperthermia, thermal simulations, thermometric measurements, nanocubes
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