Receive Fe-based nanoparticles in a nacl matrix by EB-PVD on a rotating substrate

Author:

Kurapov Yu.A., ,Osokin V.O.,Didikin G.G.,Krushynska L.A.,Lytvyn S.Ye.,Boretskyi V.V., , , , ,

Publisher

International Association Welding

Reference13 articles.

1. 1. Salata, O.V. (2004) Applications of nanoparticles in biology and medicine. J. of Nanotechnology, 2, 3-8. http://www.nanobiotechnology. com/content/2/1/3

2. 2. Movchan, B.A., Kurapov, Yu.A., Didikin, G.G. et al. (2011) Regulation of composition and structure of Fe-O system nanoparticles in electron beam evaporation of Fe3O4. Poroshkovaya Metallurgiya, 50(3-4), (478), 56-63 [in Russian]. doi. org/10.1007/s11106-011-9314-0.

3. 3. Kurapov, Yu.A., Litvin, S.E., Romanenko, S.M. (2013) Structure and thermal stability of Ti-NaCl condensates deposited from the vapour phase in vacuum. Nanostructured Materials Sci., 1, 55-62. http://www.materials.kiev.ua/science/edition_ view.jsp?id=2

4. 4. Kurapov, Yu.A., Litvin, S.E., Didikin, G.G., Romanenko, S.M. (2011) Structure of two-phase condensates Cu-NaCl deposited from vapor phase in vacuum. Sovrem. Elektrometall., 2, 19-22 [in Russian]. https://patonpublishinghouse. com/eng/journals/sem/2011/02/05

5. 5. Kurapov, Yu.A., Romanenko, S.M., Didikin, G.G., Oranskaya, E.I. (2017) Controllable synthesis of iron oxide nanoparti cles in porous NaCl matrix. Materials Research Express, 4(3), 035031. doi.org/10.1097/01.rli.0000221321.90261.09

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