The chromatographic and spectrophotometric study of the stable iron nanoparticles produced by the radiochemical method in inversed micelles

Authors

  • Aleksandra A. Revina the chief scientific worker of A.N. Frumkin Institute of physical chemistry and electrochemistry of russian academy of sciences, professor, Moscow
  • Oleg G. Larionov The main scientific worker of A.N. Frumkin institute of physical chemistry and electrochemistry of russian academy of sciences, Moscow
  • Anatoliy A. Volkov the junior scientific worker of A.N. Frumkin Institute of physical chemistry and electrochemistry of Russian Academy of Sciences, Moscow
  • Aleksandra O. Larionova the junior scientific worker of A.N. Frumkin institute of physical chemistry and electrochemistry of Russian academy of sciences, Moscow
  • Svetlana A. Parkaeva the post graduate student of A.N. Frumkin institute of physical chemistry and electrochemistry of Russian academy of sciences, Moscow
  • Ol’ga V. Suvorova the director of OOO «Nanocomposite Materials Laboratory, LLC (Lanacom, LLC) , Moscow

Keywords:

chromatography, iron nanoparticles, radio-chemical synthesis, adsorption.

Abstract

Stable iron nanoparticles synthesized radio-chemically (NP FeRCh) in the inversed micelles at
different values of hydration degree ω0 = [H2O]/[AOT] were investigated using chromatography and
spectrophotometry.
There were chosen chromatography conditions under which iron nanoparticles are divided into
two peaks. It was shown that chromatographic characteristics of received nanoparticles depends on
hydration degree of micelle solution and correspondingly on dimension of micelles water pool, which
influence in its turn on optical and adsorption properties of the receiving nanostructures.

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Published

2019-11-28

How to Cite

The chromatographic and spectrophotometric study of the stable iron nanoparticles produced by the radiochemical method in inversed micelles. (2019). Sorbtsionnye I Khromatograficheskie Protsessy, 10(6). https://journals.vsu.ru/sorpchrom/article/view/2116

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