Publications on the project |
1112 Ukraine, patent № 05662, 10.06.14, МКІ 8 F 22/6, .The method of preparation of nanosized ferromagnetic powder |
Authors: | T.E. Babutina, O.A. Ivashchenko, A.O. Perekos, I.V. Uvarova | |
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Edition: | | | | 2014,
,Ukrainian |
1112 Kinetics of Rifampicin Pelease in Vitro from Iron(111) Oxide and Hydroxyapatite Nanopowders |
Authors: | O.A. Ivashchenko, I.V. Uvarova, L.S. Protsenko, O.M. Budylina, T.Ye. Babutina | |
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Edition: | | | | 2010,
,English |
1112 Interaction of Ag-Free and Ag-Doped Hydroxyapatite with Ciprofloxacin Solutions |
Authors: | A. Perekos, N. Ulianchych, I. Uvarova et.al. | |
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Edition: | Mat.-wiss. u. Werkstofftech. 2, 2011, 98-108 | | | 2011,
,English |
1112 Deagglomeration of powders for medical application |
Authors: | O. Ivachshenko, V. Kolesnichenko, M. Holovkova
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Edition: | Adv. Sci. Lett. 4, 2011, 541-548 | | | 2011,
,English |
1112 Іncreasing the adsorptivity of magnetic nanopowders towards antibiotics |
Authors: | O.Ivashchenko, I. Uvarova, T. Babutina | |
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Edition: | | | | 2012,
,English |
1112 Аcid pickling of magnetic nanopowders to improve their adsorptivity towards antibiotics |
Authors: | O.Ivashchenko, I. Uvarova, T. Babutina | |
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Edition: | | | | 2012,
,English |
1112 Magnetite/silver/antibiotic nanocomposites for treatment of kidney inflammary diseases and renal tuberculosis |
Authors: | Olena Ivashchenko, Marcin Jarek, Grzegorz Nowaczyk, Maciej Wiesner, Tatiyana Babutina, Iryna Uvarova and Stefan Jurga | |
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Edition: | | | | 2014,
,English |
1112 Nanomaterials of medical application |
Authors: | I.Uvarova, P.Gorbyc, S,Gorobets, O.Ivashchenko, N.Ulianchych | |
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Edition: | Naukova dumka, Kyiv, 2014 | | | 2014,
,Ukrainian |
The events in the framework of the project |
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1112 Uvarova Iryna V.Professor, Doctor of sciences (engineering sciences) Head of Department +380444242581
1112 4.2. Physical and chemical basis of synthesis and formation properties of nanomaterials medical Purpose:The aim is to create magneto-sensitive composite material based on iron-containing nanopowders with the addition of silver for the controlled delivery of antibiotics and prolonged therapeutic effect Expected results:Release of new product: material Stage 1:Development of the methods for de-agglomeration of the magnetic nanopowders and for the modification of their surface Stage 2:To study the adsorption activity of the magnetic nanopowders for medical application concerning the antibiotic Stage 3:Working up the method for silver introducthion into the struction of the magnetic nanopowders, studing the adsorption activity for the magnetic nanopowders with silver concerning the antibiotic Stage 4:Studing the kinetics of release of the antibiotic and silver from the magnetic nanocomposites to the model buffer solutions Stage 5:Analysis of the magnetic properties for the magnetic nanocomposites with the antibiotic and silver
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