Praveena et al., 2017 - Google Patents
Microwave absorption studies of magnetic sublattices in microwave sintered Cr3+ doped SrFe12O19Praveena et al., 2017
- Document ID
- 783050752800848674
- Author
- Praveena K
- Sadhana K
- Liu H
- Bououdina M
- Publication year
- Publication venue
- Journal of Magnetism and Magnetic Materials
External Links
Snippet
The partial substitution of Fe 3+ by Cr 3+ in strontium hexaferrite has shown to be an effective method to tailor anisotropy for many novel microwave applications. Some basic studies have revealed that this substitution leads to unusual interactions among the …
- 230000005291 magnetic 0 title abstract description 84
Classifications
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F1/00—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties
- H01F1/01—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties of inorganic materials
- H01F1/03—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties of inorganic materials characterised by their coercivity
- H01F1/12—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties of inorganic materials characterised by their coercivity of soft-magnetic materials
- H01F1/34—Non-metallic substances, e.g. ferrites
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F1/00—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties
- H01F1/0036—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties showing low dimensional magnetism, i.e. spin rearrangements due to a restriction of dimensions, e.g. showing giant magnetoresistivity
- H01F1/0072—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties showing low dimensional magnetism, i.e. spin rearrangements due to a restriction of dimensions, e.g. showing giant magnetoresistivity one dimensional, i.e. linear or dendritic nanostructures
- H01F1/0081—Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties showing low dimensional magnetism, i.e. spin rearrangements due to a restriction of dimensions, e.g. showing giant magnetoresistivity one dimensional, i.e. linear or dendritic nanostructures in a non-magnetic matrix, e.g. Fe-nanowires in a nanoporous membrane
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Praveena et al. | Microwave absorption studies of magnetic sublattices in microwave sintered Cr3+ doped SrFe12O19 | |
Turchenko et al. | Features of structure, magnetic state and electrodynamic performance of SrFe12− xInxO19 | |
Trukhanov et al. | Peculiarities of the microwave properties of hard–soft functional composites SrTb 0.01 Tm 0.01 Fe 11.98 O 19–AFe 2 O 4 (A= Co, Ni, Zn, Cu, or Mn) | |
Vinnik et al. | Changes in the structure, magnetization, and resistivity of BaFe12–x Ti x O19 | |
Dong et al. | Microwave magnetic and absorption properties of M-type ferrite BaCoxTixFe12− 2xO19 in the Ka band | |
Wang et al. | Synthesis and electromagnetic properties of La-doped Ni–Zn ferrites | |
Hossain et al. | Tailoring the properties of Ni-Zn-Co ferrites by Gd3+ substitution | |
Akhtar et al. | Structural, magnetic, dielectric and high frequency response of synthesized rare earth doped bismuth nano garnets (BIG) | |
Akhtar et al. | Highly efficient absorber with enhanced magnetoelectric properties based on Y, Gd, and Pr doped NMZ nanoferrites | |
Praveena et al. | Improved microwave absorption properties of TiO2 and Ni0. 53Cu0. 12Zn0. 35Fe2O4 nanocomposites potential for microwave devices | |
ur Rehman et al. | Evaluations of structural, magnetic and various dielectric parameters of Ni-substituted Zn2W-type hexagonal ferrites for high frequency (1–6 GHz) applications | |
Momin et al. | Structural, morphological and magnetic properties variation of nickel-manganese ferrites with lithium substitution | |
Hojjati-Najafabadi et al. | Magneto-electric features of BaFe9. 5Al1. 5CrO19-CaCu3Ti4O12 nanocomposites | |
Zhou et al. | Effect of NiZn ferrite nanoparticles upon the structure and magnetic and gyromagnetic properties of low-temperature processed LiZnTi ferrites | |
Ramezanzaeh et al. | Electromagnetic wave reflection loss and magnetic properties of M-type SrFe12− x (Mn0. 5Sn0. 5) xO19 hexagonal ferrite nanoparticles in the Ku microwave band | |
Guo et al. | Effect of lanthanum substitution on structural, magnetic, and electric properties of Ni–Zn–Co ferrites for radio frequency and microwave devices | |
Khan et al. | Effects of Dy on structural, dielectric and magnetic properties of Ni-Sr-Y co-precipitated hexaferrites | |
Ahmad et al. | Synthesis and electrical behavior of Ni-Ti substituted Y-type hexaferrites for high frequency application | |
Neelima et al. | Structural and microwave behavior of Dy 3+-substituted Ni 0.5 Zn 0.5 Dy x Fe 2-x O 4 ferrites | |
Khani | Influence of Ho substitution on structural, magnetic and microwave absorption properties of PbM-type hexaferrites nanoparticles | |
Ramesh et al. | Electromagnetic properties of nanocrystalline Al 3+ substituted MgCuMn ferrites synthesized by microwave hydrothermal method | |
Xueyun et al. | Improved cut-off frequency in Gd/La doped NiZnCo ferrites | |
Yang et al. | Cd2+-enhanced the structure, electrical and magnetic properties of low-temperature sintered NiCuZn ferrites | |
Gui et al. | Investigation on electromagnetic properties of La–Al co-doped Co2W hexagonal ferrites for microwave absorption | |
Neelima et al. | Effect of Dy3+ substitution on structural and magnetodielectric properties of Mn–Zn ferrites synthesized by microwave hydrothermal method |