2010
DOI: 10.1016/j.jallcom.2010.03.230
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Barium hexaferrite synthesis by oxalate precursor route

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Cited by 35 publications
(15 citation statements)
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“…3. The calculated cell parameters of pure BaFe 12 O 19 coincide within error limits with literature data [40][41][42]. Since the ionic radius of Al 3 þ is significantly smaller than that of Fe 3 þ , BaFe 11.5 Al 0.5 O 19 presents smaller unit cell parameters than the unsubstituted crystals.…”
Section: Structural Characterizationsupporting
confidence: 80%
“…3. The calculated cell parameters of pure BaFe 12 O 19 coincide within error limits with literature data [40][41][42]. Since the ionic radius of Al 3 þ is significantly smaller than that of Fe 3 þ , BaFe 11.5 Al 0.5 O 19 presents smaller unit cell parameters than the unsubstituted crystals.…”
Section: Structural Characterizationsupporting
confidence: 80%
“…The magnetic properties of barium hexaferrite originate from the Fe 3+ ions of the barium hexaferrite structure [9]. In magnetoplumbite structure, the arrangement of the 12 Fe 3+ ions in the unit cell is as follows: two in the tetrahedral sites (four nearest O 2− neighbors), nine in the dodechedral sites (six nearest O 2− neighbors) and one in the hexagonal site (five nearest O 2− neighbors) [10].…”
Section: Introductionmentioning
confidence: 99%
“…The molten salt method is also known as the salt melt method and is one of the best methods for the preparation of ceramic powders. The M-type ferrites can [65] but it has been reported that the coercivity and the saturation magnetization increases with the increase of temperature from 900˚C to 1100˚C…”
Section: Molten Salt Methodsmentioning
confidence: 99%