Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/20.500.12258/23513
Title: Investigation of the Effect of Dispersion Medium Parameters on the Aggregative Stability of Selenium Nanoparticles Stabilized with Catamine AB
Authors: Blinov, A. V.
Блинов, А. В.
Maglakelidze, D. G.
Маглакелидзе, Д. Г.
Rekhman, Z. A.
Рехман, З. А.
Yasnaya, M. A.
Ясная, М. А.
Gvozdenko, A. A.
Гвозденко, А. А.
Golik, A. B.
Голик, А. Б.
Blinova, A. A.
Блинова, А. А.
Kolodkin, M. A.
Колодкин, М. А.
Nagdalian, A. A.
Нагдалян, А. А.
Keywords: ζ-potential;Aggregative stability;Transmission electron microscopy;Average hydrodynamic radius
Issue Date: 2023
Citation: Blinov, A.V., Maglakelidze, D.G., Rekhman, Z.A., Yasnaya, M.A., Gvozdenko, A.A., Golik, A.B., Blinova, A.A., Kolodkin, M.A., Alharbi, N.S., Kadaikunnan, S., Thiruvengadam, M., Shariati, M.A., Nagdalian, A.A. Investigation of the Effect of Dispersion Medium Parameters on the Aggregative Stability of Selenium Nanoparticles Stabilized with Catamine AB. // Micromachines. - 2023. - 14(2), art. no. 433. - DOI: 10.3390/mi14020433
Series/Report no.: Micromachines
Abstract: This article presents the results of the synthesis of Se NPs stabilized by a quaternary ammonium compound—catamine AB. Se NPs were obtained by chemical reduction in an aqueous medium. In the first stage of this study, the method of synthesis of Se NPs was optimized by a multifactorial experiment. The radius of the obtained samples was studied by dynamic light scattering, and the electrokinetic potential was studied using acoustic and electroacoustic spectrometry. Subsequently, the samples were studied by transmission electron microscopy, and the analysis of the data showed that a bimodal distribution is observed in negatively charged particles, where one fraction is represented by spheres with a diameter of 45 nm, and the second by 1 to 10 nm. In turn, positive Se NPs have a diameter of about 70 nm. In the next stage, the influence of the active acidity of the medium on the stability of Se NPs was studied. An analysis of the obtained data showed that both sols of SeNPs exhibit aggregative stability in the pH range from 2 to 6, while an increase in pH to an alkaline medium is accompanied by a loss of particle stability. Next, we studied the effect of ionic strength on the aggregative stability of Se NPs sols. It was found that negatively charged ions have a significant effect on the particle size of the positive sol of Se NPs, while the particle size of the negative sol is affected by positively charged ions.
URI: http://hdl.handle.net/20.500.12258/23513
Appears in Collections:Статьи, проиндексированные в SCOPUS, WOS

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