Mössbauer studies of La–Zn substitution effect in strontium ferrite nanoparticles
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- Type
- article
- Published
- 2005-04-01
- Cited by
- 60
- References
- 11
- OpenAlex
- https://openalex.org/W2013671697
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:122374574
Keywords
Mössbauer spectroscopy, Materials science, Strontium, Ferrite (magnet), Magnetization
References
- Single‐Crystal Ferroxdure, BaFe12−2x3+Irx4+Znx2+O19, with Strong Planar Anisotropy
- X-ray analysis of the structural and dynamic properties of BaFe12O19 hexagonal ferrite at room temperature
- A study of the magnetic properties of hydrothermally synthesised Sr hexaferrite with Sm substitution
- Synthesis and Characterization of Yttrium Iron Garnet Nanoparticles
- Magnetic properties of new M-type hexaferrites BaFe12-2xIrxCoxO19
- Magnetic relaxation in Zn–Sn-doped barium ferrite nanoparticles for recording
- Structure and magnetic properties of Zn–Ti-substituted Ba-ferrite particles for magnetic recording
- Synthesis and characterization of new substituted barium-ferrite particles for magnetic recording
- Mössbauer and magnetic properties of Co–Ti substituted barium hexaferrite nanoparticles
- Site preference and magnetic properties for a perpendicular recording material: BaFe12-xZn,x/2Zrx/2O19 nanoparticles
- Site occupancy and anisotropy distribution of Al substituted Ba‐ferrite with high coercivity
Cited by
- Influence of Co content on structural and magnetic properties of Sr0·68La0·32Fe11·7Zn0·30 − xCoxO19 M type hexaferrites
- Effects of barium content on microstructure and magnetic properties of Sr0·7−xBaxLa0·3Fe11·8Zn0·2O19 M type hexaferrites
- Effects of La/Zn ratios on structural and magnetic properties of Sr1 − xLaxFe12 − yZnyO19 hexagonal ferrites
- Effects of Ce–Co substitution on the magnetic properties of M-type barium hexaferrites
- Comparative studies of SrZrxMnxFe12−2xO19 nanoparticles synthesized by co-precipitation and sol–gel combustion methods
- Structural and magnetic properties of Pr–Ni substituted Ca0.5Ba0.5Fe12O19 hexa-ferrite nanoparticles
- Effect of Al–Cr doping on the structural, magnetic and dielectric properties of strontium hexaferrite nanomaterials
- Research on La3+–Co2+-substituted strontium ferrite magnets for high intrinsic coercive force
- Effects of La–Zn substitution on microstructure and magnetic properties of strontium ferrite nanofibers
- Role of Zr–Co substitution at iron site on structural, magnetic and electrical properties of Sr-hexaferrites nanomaterials synthesized by the sol–gel combustion method
- Effect of site preferences on structural and magnetic switching properties of CO–Zr doped strontium hexaferrite SrCoxZrxFe(12−2x)O19
- Electric and Dielectric Properties of Cr-Ga Substituted BaM Hexaferrites for High-Frequency Applications
- Physical, electrical and dielectric properties of Ca-substituted strontium hexaferrite (SrFe12O19) nanoparticles synthesized by co-precipitation method
- Enhancement of magnetic properties in Mn–Zn substituted M-type Sr-hexaferrites
- The effect of La-substitution on magnetic properties of nanosized Sr1−xLaxTi0.05Zn0.2(Fe3+)11.75−δ(Fe2+)δO19 powders
- Maximum energy product at elevated temperatures for hexagonal strontium ferrite (SrFe12O19) magnet
- Influence of Cd substitution on structural, electrical and magnetic properties of M-type barium hexaferrites co-precipitated nanomaterials
- Effect of doping of Zr–Zn binary mixtures on structural, electrical and magnetic properties of Sr-hexaferrite nanoparticles
- The effects of the iron content on structural and magnetic properties of Sr0.80La0.20FexZn0.15O19 hexagonal ferrites
- Heat‐treatment influence on the microstructure and magnetic properties of rare‐earth substituted SrFe12O19
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