Przejdź do treści

Characterization and Atomic Simulation of Selenium Nanoparticles Stabilized with Sodium Lauryl Sulfate (SLS)

This paper presents the results of studying selenium nanoparticles stabilized with sodium lauryl sulfate (SLS). Selenium nanoparticles are obtained by chemical reduction in an aqueous medium. It is shown that the optimal parameters for the synthesis of nanoparticles are selenium, the concentration o...

Szczegółowa specyfikacja

Zapisane w:
Opis bibliograficzny
Główni autorzy: Blinova, A. A., Блинова, А. А., Blinov, A. V., Блинов, А. В., Serov, A. V., Серов, А. В., Khramtsov, A. G., Храмцов, А. Г., Rekhman, Z. A., Рехман, З. А., Gvozdenko, A. A., Гвозденко, А. А., Golik, A. B., Голик, А. Б., Filippov, D. D., Филиппов, Д. Д., Kolodkin, M. A., Колодкин, М. А.
Format: Статья
Język:English
Wydane: 2024
Hasła przedmiotowe:
Dostęp online:https://dspace.ncfu.ru/handle/123456789/27112
Etykiety: Dodaj etykietę
Nie ma etykietki, Dołącz pierwszą etykiete!
Opis
Streszczenie:This paper presents the results of studying selenium nanoparticles stabilized with sodium lauryl sulfate (SLS). Selenium nanoparticles are obtained by chemical reduction in an aqueous medium. It is shown that the optimal parameters for the synthesis of nanoparticles are selenium, the concentration of selenous acid is 0.04 M, the concentration of sodium lauryl sulfate is 0.1 M, and the concentration of ascorbic acid is 0.75 M. Investigation of the effect of the medium active acidity showed that obtained selenium nanoparticles exhibit aggregation stability at a pH from 2 to 8. The analysis of a different reaction to the aggregation of the occurrence of selenium nanoparticles reveals a significant effect on the particle size of metal cations, accompanied by particle aggregation.