New green, nature-like technologies for the biosynthesis of noble and heavy metal nanoparticles

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription or Fee Access

Abstract

The production of nanoparticles (NM) and metal nanoparticles (MPM) are among the main areas in nanotechnology (NT), as NM, like all NT, is interdisciplinary in nature and, actually, intersectoral in use. Among all types of NF, NFMs occupy an important place and they are very widely used in various fields of science and technology: medicine (therapy, diagnosis), environmental protection, catalysis, agricultural engineering, product packaging, antimicrobial treatment, etc. Our series of articles will cover the methods of NMFs production and their application in various fields of medicine (wound healing, oncology, treatment of bacterial and viral diseases). In this paper we will focus on the methods of the NMFs production and, above all, on the biosynthesis of noble and heavy metal NMFs.

Full Text

Restricted Access

About the authors

G. E. Krichevsky

Coletex JSC

Author for correspondence.
Email: gek20003@gmail.com
ORCID iD: 0000-0001-9777-9257

Doct. of Sci. (Tech), Prof.

Russian Federation, Moscow

N. D. Oltarzhevskaya

Coletex JSC

Email: gek20003@gmail.com

Doct. of Sci. (Tech), Prof., General Director

Russian Federation, Moscow

Yu. S. Fidorovskaya

Coletex JSC

Email: gek20003@gmail.com
ORCID iD: 0000-0001-6091-2878

Cand. of Sci. (Tech), Researcher

Russian Federation, Moscow

D. R. Gafurova

Coletex JSC Moscow

Email: gek20003@gmail.com

Researcher

Russian Federation, Москва

References

  1. Кричевский Г.Е. Зеленые и природоподобные технологии – основа устойчивого развития цивилизации. В 3-х т. М.: Lambert Acad. Publ. 2020. Т. 2, 3. 524 c.
  2. Кричевский Г.Е. Основы нанотехнологии. В 2-х т. Т. 2. М.: Грин Прин. т. 2022.
  3. Хартманн У. Очарование нанотехнологии. М.: Бином, 2008. 173 c.
  4. Rajmeberan Ch. et al. Journal of Saudi Chem. Soc. 2016. Vol. XXX, pp. 1016.
  5. Egbuna Cn. et all. Toxitity of Nanoparticles in Biomedicae Application. Jour of Toxicology. 2021. PP. 1–2.
  6. Villaverde-Cantizano G. Reducing Agents in colloidal Nanoparticles Synthesis. Royal Soc. of Chem. 2021. PP. 1–27.
  7. Олтаржевская Н.Д., Коровина М.А., Кричевский Г.Е., Щедрина М.А., Егорова Е.А. Возможности применения полисахаридов при лечении ран. Раны и раневые инфекции. Журнал имени проф. Б.М. Костюченка. 2019. Т. 6. № 2. С. 24–31.
  8. Фидоровская Ю.С., Олтаржевская Н.Д., Медушева Е.О. Биополимерная гидрогелевая композиция с комплексным эффектом для лечения гнойных ран. Международная конференция "Биоматериалы и нанобиоматериалы: передовые проблемы токсикологии и экологии в области безопасности". 2020. С. 24.
  9. Кричевский Г.Е. Химическая технология текстильных материалов. Т. 1. М.: Изд. МГУ, 2000. 436 с.
  10. Патент на изобретение № 2627609. Кричевский Г.Е., Гафурова Д.Р. Олтаржевская Н.Д. и др.

Supplementary files

Supplementary Files
Action
1. JATS XML
2. Fig.1. а – basic principles for nanoparticle synthesis; b – nanoparticle synthesis methods

Download (252KB)
3. Fig.2. Sodium alginate hydrogels with different concentrations of silver nitrate

Download (425KB)
4. Fig.3. Absorption spectrum of the alginate-based hydrogel sample (6%) with 0.1 M AgNO3 and NaOH

Download (973KB)
5. Fig.4. Film surface topography at 1 x 1 µm scan size and 200 x 200 nm

Download (114KB)
6. Fig.5. A cross-section of surface topography along the line shown in Fig.4

Download (89KB)
7. Fig.6. Film surface topography (study no.2) at scan sizes 2 x 2 μm and 1 x 1 μm

Download (834KB)
8. Fig.7. Cross-section of sample droplet surface topography along the line shown in the Fig.4

Download (98KB)
9. Fig.8. Cotton fibre cloth (0.005 M silver nitrate, sodium hydroxide, temperature 60 °C)

Download (259KB)

Copyright (c) 2023 Krichevsky G.E., Oltarzhevskaya N.D., Fidorovskaya Y.S., Gafurova D.R.

This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies