id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-390	Banis, G.; Kouli, M.E.; Ferraro, A.; Molino, A.; Karatza, D.; Chianese, S.; Musmarra, D.; Hristoforou, E.	An Innovative Application of Super-Paramagnetic Iron Oxide Nanoparticles for Magnetic Separation 	2017	6	.pdf	application/pdf	3066	118	39	Among them, nanoparticles possessing magnetic properties offer great advantages due to a characteristic, named superparamagnetism, that makes magnetic nanoparticles attractive for biomedical applications because the risk of forming agglomerates is very low in the absence of magnetic fields. Magnetic nanoparticles are synthesized from a variety of metallic atoms combined eventually with oxygen including iron oxides, such as Fe3O4 and γ-Fe2O3 (Adamaki et al., 2016; DOI: 10.3303/CET1760015 Please cite this article as: Banis G., Kouli M.E., Ferraro A., Molino A., Karatza D., Chianese S., Musmarra D., Hristoforou E., 2017, An innovative application of super-paramagnetic iron oxide nanoparticles for magnetic separation, Chemical Engineering Transactions, 60, 85-90 DOI: 10.3303/CET1760015 85 Metaxa et al., 2016), spinel-type ferromagnets such as MgFe2O4, MnFe2O4, and CoFe2O4, alloys such as CoPt3 and FePt as well as pure metals such as Fe and Co.	cache/cet-390.pdf	txt/cet-390.txt
