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Crystalloquasichemical Model of Spinel CoFe2O4 Formation, Obtained by Chemical co-Precipitation Method

T. R. Tatarchuk et al · Vasyl Stefanyk Carpathian National University · 2016

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In the work the spinel cobalt ferrite synthesized by chemical co-precipitation method. The X-ray diffraction analysis and thermal analysis confirmed the crystalline structure and phase purity of the prepared ferrite. The crystalloquasichemical mechanism of formation stoichiometric cobalt ferrite through interaction by defective hydrooxide phases was described. The surface phenomena that occur on the boundary phase distribution was described. There formation of cationic and anionic vacancies, rooted cobalt atoms or oxygen atoms. Crystalloquasichemical modeling of surface interactions between Co(OH)2 and Fe(OH)3 can trace the formation of spinel structure with the participation of antistructure of matrix and reduced to the corresponding stoichiometric hydroxides species. Shows the reaction of four types of crystal impurity clusters on the surface of the hydroxide matrix and their interaction with each other to form spinel СоFe2O4. <br /><strong>Keywords: </strong>cobalt ferrite, spinel, defect, vacancy, crystalloquasichemistry.

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APA 7

al, T. R. T. E. (2016). Crystalloquasichemical Model of Spinel CoFe2O4 Formation, Obtained by Chemical co-Precipitation Method. https://doi.org/10.15330/pcss.16.3.540-546

MLA

al, T. R. Tatarchuk et. "Crystalloquasichemical Model of Spinel CoFe2O4 Formation, Obtained by Chemical co-Precipitation Method." 2016. https://doi.org/10.15330/pcss.16.3.540-546.

Chicago

al, T. R. Tatarchuk et. 2016. "Crystalloquasichemical Model of Spinel CoFe2O4 Formation, Obtained by Chemical co-Precipitation Method.". https://doi.org/10.15330/pcss.16.3.540-546.

Harvard

al, T. R. T. E. 2016, Crystalloquasichemical Model of Spinel CoFe2O4 Formation, Obtained by Chemical co-Precipitation Method, Vasyl Stefanyk Carpathian National University, available at: https://doi.org/10.15330/pcss.16.3.540-546 [Accessed 5 Aug. 2026].

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Titolo
Crystalloquasichemical Model of Spinel CoFe2O4 Formation, Obtained by Chemical co-Precipitation Method
Autore / collaboratori
T. R. Tatarchuk et al
Editore
Vasyl Stefanyk Carpathian National University
Anno di pubblicazione
2016
ISSN
1729-4428
ISSN
1729-4428
Lingua
Inglés
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