Please use this identifier to cite or link to this item: http://dspace.nuph.edu.ua/handle/123456789/27206
Title: Optimization of the technology for producing a magneto controllable nanocomposite Ag@Fe3O4 using mathematical design
Authors: Kryskiv, О. S.
Chan, T. M.
Koval, A. O.
Shpychak, O. S.
Romas, K. P.
Kran, O. S.
Martyniuk, T. V.
Antonenko, O. V.
Keywords: synthesis;technology;nanoparticles;silver shell;magneto controllable composite system;methods of mathematical design;regression and correlation analysis;response surface methodology
Issue Date: 2020
Bibliographic description (Ukraine): Optimization of the technology for producing a magneto controllable nanocomposite Ag@Fe3O4 using mathematical design / O. S. Kryskiv // International Journal of Pharmacy and Pharmaceutica l Sciences. - Vol 12, Issue 1. - 2020. - P. 26-30.
Abstract: Objective: The purpose of the research was to optimize technology for producing a magneto controllable nanocomposite Ag@Fe3O4 with modern physicochemical and therapeutic requirements using methods of mathematical design of the experiment. Methods: To optimize the synthesis process of the nanocomposite Ag@Fe3O4, the method of factor experiment was used. Mathematical calculations were performed using the STATISTICA 10 StatSoft Inc. system and Excel spreadsheet processor of MS Office 2019 Professional Plus. Results: Based on the study of technological parameters of nanocomposite synthesis Ag@Fe3O4 (16 experiments) a regression equation was obtained: Y = 106.415+0.038X1+4.448Х2+1.806Х3–1.593Х4–18.945Х5–109.980Х6. By the use of this equation the synthesis parameters were optimized with the help of steepest ascent method. It was found that the maximum yield of Ag@Fe3O4 can be achieved under the following conditions: X1 (magnetite synthesis time, min)–40; X2 (glucose content in solution, %)–10; X3 (temperature of the Tollens reaction, °С)–65; X4 (magnetite silver coating time, min)–30; X5 (pH, units)–8.5; X6 (rate of addition of ammonia, mol/min)–0.36. Conclusion: Using mathematical design of the experiment, a technology was developed for producing Ag@Fe3O4 with modern physicochemical and therapeutic requirements.
URI: http://dspace.nuph.edu.ua/handle/123456789/27206
ISSN: 0975-1491
Appears in Collections:Наукові публікації кафедри фармацевтичних технологій, стандартизації та сертифікації ліків ІПКСФ



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