Core–Shell Magnetic Nanoparticles
Author:
Affiliation:
1. Departamento de Ciencias, Universidad Pública de Navarra, E-31006 Pamplona, Spain
2. Institute for Advanced Materials and Mathematics (INAMAT2), Universidad Pública de Navarra, E-31006 Pamplona, Spain
Abstract
Publisher
MDPI AG
Subject
General Materials Science,General Chemical Engineering
Link
https://www.mdpi.com/2079-4991/13/5/822/pdf
Reference4 articles.
1. Kadyrzhanov, K.K., Kozlovskiy, A.L., Egizbek, K., Kenzhina, I.E., Abdinov, R.S., and Zdorovets, M.V. (2022). Study of Corrosion Mechanisms in Corrosive Media and Their Influence on the Absorption Capacity of Fe2O3/NdFeO3 Nanocomposites. Nanomaterials, 12.
2. Moacă, E., Watz, C., Socoliuc, V., Racoviceanu, R., Păcurariu, C., Ianoş, R., Cîntă-Pînzaru, S., Tudoran, L.B., Nekvapil, F., and Iurciuc, S. (2021). Biocompatible Magnetic Colloidal Suspension Used as a Tool for Localized Hyperthermia in Human Breast Adenocarcinoma Cells: Physicochemical Analysis and Complex In Vitro Biological Profile. Nanomaterials, 11.
3. Li, Y., Kuang, Q., Men, X., Wang, S., Li, D., Choi, C., and Zhang, Z. (2021). Anisotropic Growth and Magnetic Properties of α″-Fe16N2@C Nanocones. Nanomaterials, 11.
4. López-Martín, R., Santos Burgos, B., Normile, P.S., De Toro, J.A., and Binns, C. (2021). Gas Phase Synthesis of Multi-Element Nanoparticles. Nanomaterials, 11.
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