Physico-Chemical Study on the Mechanism of Interaction Between Divalent and Trivalent Iron Double Oxide Nanoparticles With Fibrillar Protein-Gelatin

dc.contributor.authorTsykhanovska, Iryna
dc.contributor.authorLazarieva, Tetiana
dc.contributor.authorAlexandrov, Olexandr
dc.contributor.authorRiabchykov, Mykola
dc.contributor.authorKoval, Alla
dc.contributor.authorBryzytska, Oksana
dc.date.accessioned2026-08-03T10:32:54Z
dc.date.issued2026
dc.description.abstractThe study investigates the interaction mechanism between ferrum(II, III) oxide (Fe₃O₄) nanoparticles and the fibrillar protein gelatin (Gel) using a set of physicochemical methods. For the first time, it was established that the formation of a stable intermolecular complex is due to the amphiphilic and clusterophilic properties of Fe₃O₄ nanoparticles, their ability to polarize, electrostatic interactions, and the formation of supramolecular structures. Absorption in the region of 260 nm (UV-Vis spectroscopy) indicates the formation of plasmon resonance in the NPFe₃O₄/Gel system. Dynamic Light Scattering (DLS) revealed an average hydrodynamic particle diameter of approximately 79.0 nm, which is consistent with X-ray diffraction (XRD) data and confirms the chemisorption of the Gel protein on the surface of Fe₃O₄ nanoparticles. The work has scientific novelty in understanding the specifics of biopolymer binding with metal oxide nanostructures.
dc.identifier.citationPhysico-Chemical Study on the Mechanism of Interaction Between Divalent and Trivalent Iron Double Oxide Nanoparticles With Fibrillar Protein-Gelatin / I. T. Tsykhanovska et al. Chemistry & Chemical Technology. 2026. Vol. 20, no. 1. P. 37–52.
dc.identifier.urihttps://dspace.khimu-library.com.ua/handle/123456789/560
dc.language.isoen_US
dc.subjectnano аssociates
dc.subjectchemisorption
dc.subjectFe₃O₄ nanoparticles
dc.subjectgel
dc.titlePhysico-Chemical Study on the Mechanism of Interaction Between Divalent and Trivalent Iron Double Oxide Nanoparticles With Fibrillar Protein-Gelatin
dc.title.alternativeФізико-хімічні дослідження механізму взаємодії наночастинок подвійного оксиду дво- та тривалентного феруму з фібрилярним білком-желатином
dc.typeArticle

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