Hydrothermal synthesis of nanostructured hybrids based on iron oxide and branched PEI polymers. Influence of high pressure on structure and morphology

Popescu, L. M.;Piticescu, R. M.;Petriceanu, M.;Ottaviani, M. F.;Kuncser, V.;et.al.
(2015) Materials Chemistry and Physics — Vol. 161, p. 84-95 (2015)

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Authors
  • Popescu, L. M.National RD Institute for Non-Ferrous and Rare Metals, Judetul Ilfov, Romania
    Author
  • Piticescu, R. M.National RD Institute for Non-Ferrous and Rare Metals, Judetul Ilfov, Romania
    Author
  • Petriceanu, M.National RD Institute for Non-Ferrous and Rare Metals, Judetul Ilfov, Romania
    Author
  • Ottaviani, M. F.University of Urbino, Italy
    Author
  • Dirtu, M. M.UCLouvain
    Author
  • Wolff, Mariusz JozefUCLouvain
    Author
  • Garcia, Yannorcid-logoUCLouvain
    Author
  • Kuncser, V.National Institute of Materials Physics, Bucharest, Romania
    Author
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Abstract
Homogeneous hybrids in which iron oxide nanoparticles are entrapped within polymer structure are of interest for their potential applications in biomedical field, such as diagnostic, therapeutic and theranostic purposes. For this reason, hybrid nanomaterials based on branched polyethyleneimine (PEI) and iron oxide with different ratios were synthesized in a single step by hydrothermal procedure at high pressure and low temperature. Iron oxide is formed in the presence of branched PEI and the interaction between them takes place in the reaction medium. The influence of synthesis parameters on the hybrid formation, as well as chemical and structural properties was studied by means of FTIR, DSC-TG, HRTEM, electron paramagnetic resonance (EPR), magnetic measurements (SQUID) and 57Fe M€ossbauer analyses.It has been shown that synthesis parameters influence thermal stability and morphology of the hybrids. FeO(OH) crystallites of 2e5 nm are formed. Iron oxyhydroxide nanoparticles strongly entrapped in PEI structure are obtained. The low and distributed values of the specific spontaneous magnetisation in samples prepared under the same pressure conditions support the presence of very fine FeO(OH) nanoparticles, which formation and magnetic properties are depending on the mass ratio between iron oxide and PEI.
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Citations

Popescu, L. M., Piticescu, R. M., Petriceanu, M., Ottaviani, M. F., Cangiotti, M., Vasile, E., Dirtu, M. M., Wolff, M. J., Garcia, Y., Schinteie, G., & Kuncser, V. (2015). Hydrothermal synthesis of nanostructured hybrids based on iron oxide and branched PEI polymers. Influence of high pressure on structure and morphology. Materials Chemistry and Physics, 161, 84-95. https://doi.org/10.1016/j.matchemphys.2015.05.018 (Original work published 2015)