2022
DOI: 10.1016/j.jmmm.2022.169987
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SrFe12O19/CoFe2O4 magnetic composites: Nanoparticle size and effect of annealing temperature on magnetic properties

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Cited by 8 publications
(1 citation statement)
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“…Furthermore, by comparing the M DCD curves, we point out that remarkably, a slight increase of remanence is produced for NC@CZFO@pH10 compared to NC@CFO@pH10, revealing the possibility to enhance the remanence by coupling SFO to a second prototypical particle, extremely important for technological applications, such as permanent magnets. [63][64][65][66] Among other synthesis methods to produce composites with similar magnetic properties (see Section 9 of ESI †), [67][68][69] this design is essentially suitable for any type of particle, thus opening up the way for potential application of this pH-controlled agglomeration in other systems.…”
Section: Effect Of Elemental Doping On the Anisotropy Of Ncsmentioning
confidence: 99%
“…Furthermore, by comparing the M DCD curves, we point out that remarkably, a slight increase of remanence is produced for NC@CZFO@pH10 compared to NC@CFO@pH10, revealing the possibility to enhance the remanence by coupling SFO to a second prototypical particle, extremely important for technological applications, such as permanent magnets. [63][64][65][66] Among other synthesis methods to produce composites with similar magnetic properties (see Section 9 of ESI †), [67][68][69] this design is essentially suitable for any type of particle, thus opening up the way for potential application of this pH-controlled agglomeration in other systems.…”
Section: Effect Of Elemental Doping On the Anisotropy Of Ncsmentioning
confidence: 99%