Low-field magnetoelectric effect at room temperature.
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Summary
Material, Z-type hexaferrites, overcome problems on magnetically induced ferroelectrics, obtaining the best magnetoelectric properties, which are obtained for Sr(3)Co(2)Fe(24)O(41) ceramics sintered in oxygen, which exhibit a low-field magnetoelectedric effect at room temperature.
- Type
- letter
- Published
- 2010-10-01
- Cited by
- 481
- References
- 28
- OpenAlex
- https://openalex.org/W2056924273
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5386354
Keywords
Multiferroics, Magnetoelectric effect, Ferroelectricity, Condensed matter physics, Materials science
References
- Superexchange Interactions of (Ba1-xSrx)2Zn2Fe12O22 System Studied by Neutron Diffraction
- Crystal and magnetic structures and their temperature dependence of Co2Z-type hexaferrite (Ba,Sr)3Co2Fe24O41 by high-temperature neutron diffraction
- Sublattice magnetization and anisotropy properties of Ba3Co2Fe24O41 hexagonal ferrite
- Spin current and magnetoelectric effect in noncollinear magnets.
- Enhanced Dispersion Frequency of Hot‐Pressed Z‐Type Magnetoplumbite Ferrite with the Composition 2CoO·3Ba0.5Sr0.5O·10.8Fe2O3
- Crystallography of the Hexagonal Ferrites
- Why Are There so Few Magnetic Ferroelectrics
- Realization of giant magnetoelectricity in helimagnets.
- Multi-ferroic magnetoelectrics
- Ferroelectric Polarization Reversal by a Magnetic Field in Multiferroic Y-type Hexaferrite Ba2Mg2Fe12O22
- Electric polarization rotation in a hexaferrite with long-wavelength magnetic structures.
- Ferroelectricity in spiral magnets.
- Revival of the magnetoelectric effect
- The synthesis and characterization of the hexagonal Z ferrite, Sr3Co2Fe24O41, from a sol-gel precursor
- X-ray and neutron diffraction studies on iron-substituted Z-type hexagonal barium ferrite: Ba3Co2−xFe24+xO41 (x=0–0.6)
- Low-Magnetic-Field Control of Electric Polarization Vector in a Helimagnet
- Classifying multiferroics: Mechanisms and effects
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Magnetic inversion symmetry breaking and ferroelectricity in TbMnO3.
- Multiferroics: a magnetic twist for ferroelectricity.
Cited by
- Distorted Monolayer ReS2 with Low-Magnetic-Field Controlled Magnetoelectricity.
- Effect of Ti substitution on spin reorientation for Ba 3 Co 2 Fe 24-x Ti x O 41 hexaferrites
- Numerical Study of the Transition Metal Oxides and the Transport Properties of Iron Pnictides
- Synthesis and multiferroic properties of M-type SrFe12O19 hexaferrite ceramics
- Magnetic and magnetoelectric properties of M-type substitution hexaferrites TScxFe12 − xO19 (T = Ba, Sr)
- Magnetoelectric excitations in hexaferrites utilizing solenoid coil for sensing applications
- Control of Electric Polarisation by Magnetic Fields in Spin-Spiral Multiferroics
- Dual ferroic properties of hexagonal ferrite ceramics BaFe12O19 and SrFe12O19
- Magnetoelectric sensor excitations in hexaferrite slabs
- Physical principles for scalable neural recording
- Spin-driven multiferroics in BaYFeO4
- Magnetic and magnetoelectric properties of Ba2-xSrxNi2Fe12O22 single crystals with Y-type hexaferrite structure
- Dielectric properties of Sr3Co2Fe24O41 Z-type hexaferrite
- Magnetism and magnetoelectricity of a U-type hexaferrite Sr4Co2Fe36O60
- Zn 2+ 掺杂Sr 3 Co 2 Fe 24 O 41 六角铁氧体的磁性质研究 The Effect of Zn 2+ Substitution on Magnetic Properties of Z-Type Hexaferrite Sr 3 Co 2 Fe 24 O 41
- Magnetic field controllable electric polarization in Y-type hexaferrite Ba0.5Sr1.5Co2Fe12O22
- Effects of composition and temperature on the magnetic properties of (Ba,Sr)3Co2Fe24O41 Z type hexaferrites
- Flat and conical incommensurate magnetic structures in the two-subsystem partially frustrated Heisenberg ferrimagnet
- Dielectric relaxation and magnetodielectric response in DyMn0.5Cr0.5O3
- Investigation of Magnetic Properties of Sr-Doped Ba3–xSrxCo2Fe24O41 Z-type Hexaferrite by Mössbauer Spectroscopy
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