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Role of the Precursor Composition in the Synthesis of Metal Ferrite Nanoparticles

Cited 12 time in Web of Science Cited 13 time in Scopus
Authors

Chang, Hogeun; Kim, Byung Hyo; Lim, Suk Gyu; Baek, Hayeon; Park, Jungwon; Hyeon, Taeghwan

Issue Date
2021-04-05
Publisher
American Chemical Society
Citation
Inorganic Chemistry, Vol.60 No.7, pp.4261-4268
Abstract
Ternary oxide nanoparticles have attracted much interest because of their intriguing properties, which are not exhibited by binary oxide nanoparticles. However, the synthesis of ternary oxide nanoparticles is not trivial and requires a fundamental understanding of the complicated precursor chemistry that governs the formation mechanism. Herein, we investigate the role of the chemical composition of precursors in the formation of ternary oxide nanoparticles via a combination of mass spectrometry, electron microscopy with elemental mapping, and thermogravimetric analysis. Mn2+, Co2+, and Ni2+ ions easily form bimetallic-oxo clusters with Fe3+ ions with a composition of MFe2O(oleate)(6) (M = Mn, Co, Ni). The use of clusters as precursors leads to the successful synthesis of monodisperse metal ferrite nanoparticles (MFe2O4). On the contrary, zinc- or copper-containing complexes are formed independently from iron-oxo clusters in the precursor synthesis. The mixture of complexes without a bimetallic-oxo core yields a mixture of two different nanoparticles. This study reveals the importance of the precursor composition in the synthesis of ternary oxide nanoparticles.
ISSN
0020-1669
URI
https://hdl.handle.net/10371/179173
DOI
https://doi.org/10.1021/acs.inorgchem.0c03567
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  • College of Engineering
  • School of Chemical and Biological Engineering
Research Area Chemistry, Materials Science

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