Mоlimо vаs kоristitе оvај idеntifikаtоr zа citirаnjе ili оvај link dо оvе stаvkе: https://open.uns.ac.rs/handle/123456789/13849
Nаziv: Synthesis and characterization of silica core/nano-ferrite shell particles
Аutоri: Nikolić, Milan
Giannakopoulos, Konstantinos
Stamopoulos, Dimosthenis
Moshopoulou, Evagelia
Srdić, Vladimir 
Dаtum izdаvаnjа: 1-јун-2012
Izdаvаč: Elsevier
Čаsоpis: Materials Research Bulletin
Sažetak: Core/shell particles were synthesized by assembling oppositely charged ferrite (Fe 3O 4 or NiFe 2O 4) nanoparticles on the surface of monodispersed silica core particles (having size ∼0.4 μm) prepared by hydrolysis and condensation of tetraethylortosilicate. Optimal conditions for synthesis of silica core/nano-Fe 3O 4 shell particles were found at pH ∼ 5.4. The obtained particles have superparamagnetic behavior above a blocking temperature of ≈25 K, which make them very attractive for a broad range of biomedical and bioengineering applications. Incorporation of nickel into ferrite structure could not be achieved at lower pH value, so functionalization of core particles was required. Incorporation of nickel into ferrite structure was successful at pH above 7, however at higher pH the formation rate of nickel-ferrite particles becomes very fast and the self-aggregation dominates the competing formation of the nickel-ferrite shell. Because of that the self-aggregation was prevented by surface modification of nickel-ferrite nanoparticles with citric acid before their deposition on the functionalized silica core and homogenous and continuous NiFe 2O 4 shell was finally obtained. © 2012 Elsevier Ltd. All rights reserved.
URI: https://open.uns.ac.rs/handle/123456789/13849
ISSN: 00255408
DOI: 10.1016/j.materresbull.2012.02.034
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