journal article May 01, 2022

Magnetodielectric mechanism and application of magnetoelectric composites

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References
46
[1]
Mao "Magnetoelectric devices based on magnetoelectric bulk composites" J. Mater. Chem. C (2021) 10.1039/d1tc00419k
[2]
Chu "Review of multi-layered magnetoelectric composite materials and devices applications" J. Phys. D. Appl. Phys. (2018) 10.1088/1361-6463/aac29b
[3]
Leung "A review on applications of magnetoelectric composites: from heterostructural uncooled magnetic sensors, energy harvesters to highly efficient power converters" J. Phys. D. Appl. Phys. (2018) 10.1088/1361-6463/aac60b
[4]
Zhou "Magnetodielectric effect and electric-induced magnetic permeability in magnetoelectric laminate composite under low inspiring signal" J. Appl. Phys. (2013) 10.1063/1.4780828
[5]
Yao "The effects of magnetic field and polarization on the permeability and permittivity of (1–x)Ni0.4Zn0.6Fe2O4+xPb(Zr0.53Ti0.47)O3 composites at high frequency, J. Phys. D" Appl. Phys. (2018)
[6]
Yao "Electric and magnetic properties of some magnetodielectric composites at microwave frequency" J. Magn. Magn. Mater. (2020) 10.1016/j.jmmm.2020.166410
[7]
Lu "Single-phase multiferroics: new materials, phenomena, and physics" Natl. Sci. Rev. (2019) 10.1093/nsr/nwz091
[8]
Shen "Magnetoelectric multiferroicity and quantum paraelectricity in hexaferrites" Sci. China Phys. Mech. Astron. (2019) 10.1007/s11433-018-9304-9
[9]
Nature of the Magnetic Order and Origin of Induced Ferroelectricity inTbMnO3

S. B. Wilkins, T. R. Forrest, T. A. W. Beale et al.

Physical Review Letters 2009 10.1103/physrevlett.103.207602
[10]
Nath "Magnetically tunable electrical transport of multiferroic xLaFeO3- (1–x)PbZr0.58Ti0.42O3 (x = 0.2 and 0.3) nanocomposites" Mater. Res. Express (2019) 10.1088/2053-1591/ab46e3
[11]
Atif "Complex dielectric and impedance analysis in a relaxor type ferroelectric/ferrimagnetic magnetoelectric (0.5)PbZr0.52Ti0.48O3+(0.5)CoFe2O4 composite" J. Alloy. Compd. (2018) 10.1016/j.jallcom.2017.11.168
[12]
Ashmawy "Physical and magnetic properties for two types of connectivity of NiFe2O4/PbZr0.52Ti0.48O3 (NFO/PZT) composite" Appl. Phys. A (2021) 10.1007/s00339-021-04711-6
[13]
Bansal "Magnetoelectric coupling enhancement in lead-free BCTZ-xNZFO composites" J Mater Sci: Mater Electron (2021)
[14]
Mane "Magnetoelectric and magnetodielectric coupling in partially Ni-doped CoFe2O4 and 0.15(Ba0.7Ca0.3TiO3)–0.85(BaZr0.2Ti0.8O3) composites prepared via clean microwave sintering" J. Alloy. Compd. (2020) 10.1016/j.jallcom.2020.156599
[15]
Dinesh Kumar "Large converse magnetoelectric effect in Sm doped Pb(Mg1/3Nb2/3)-PbTiO3 and NiFe2O4 laminate composite" J. Alloy. Compd. (2021) 10.1016/j.jallcom.2020.157684
[16]
Zabotto "Magnetodielectric and magnetoelectric correlation in (1–x)PMN-PT/xCFO 0–3 particulate composites" J. Alloy. Compd. (2020) 10.1016/j.jallcom.2020.154517
[17]
ElGendy "Synthesis, microstructure analysis, electrical and magnetic properties of Ni0.5Mg0.5Fe2O4-BaTiO3 Nano-composites" Appl. Phys. A (2021) 10.1007/s00339-021-04384-1
[18]
Shi "Giant magnetoelectric coupling observed at high frequency in NiFe2O4-BaTiO3 particulate composite" RSC Advances (2020) 10.1039/d0ra05782g
[19]
Ahmed "Enhancement in the magnetoelectric and energy storage properties of core-shell-like CoFe2O4-BaTiO3 multiferroic nanocomposite" J. Alloy. Compd. (2021) 10.1016/j.jallcom.2021.160875
[20]
Yang "Enhanced magnetoelectric properties of the laminated BaTiO3/CoFe2O4 composites" J. Alloy. Compd. (2015) 10.1016/j.jallcom.2015.05.020
[21]
Thankachan "Room temperature magnetoelectric coupling effect in CuFe2O4-BaTiO3 core-shell and nanocomposites" J. Alloy. Compd. (2018) 10.1016/j.jallcom.2017.09.309
[22]
Jiang "Microstructure and microwave-frequency electromagnetic properties of Ni0.4Zn0.6Fe2O4/Ba0.6Sr0.4TiO3 composites" Ceram. Int. (2016) 10.1016/j.ceramint.2016.07.007
[23]
M.u.D. Rather, R. Samad, N. Hassan, B. Want, Magnetodielectric effect in rare earth doped BaTiO3-CoFe2O4 multiferroic composites, J. Alloy. Compd. 794 (2019) 402-416. 10.1016/j.jallcom.2019.04.244
[24]
Hemeda "Tailored dielectric, magnetic and magnetoelectric properties of Cu0.6Zn0.4Fe2O4-BaTiO3 composites" Mater. Res. Express (2018) 10.1088/2053-1591/aacef3
[25]
Atif "Structural, magnetic and impedance spectroscopy analysis of (0.7)CoFe2O4+(0.3)BaTiO3 magnetoelectric composite" Mater. Res. Bull. (2018) 10.1016/j.materresbull.2018.07.026
[26]
Chavan "Investigations on magnetodielectric and magnetoelectric properties of CNFO-BST composite" Mater. Chem. Phys. (2018) 10.1016/j.matchemphys.2018.01.044
[27]
Li "Dielectric, multiferroic and magnetodielectric properties of (1–x)BaTiO3-xSr2CoMoO6 solid solution" Ceram. Int. (2019) 10.1016/j.ceramint.2019.05.163
[28]
Chen "Enhanced magnetodielectric behaviors at wide frequency range and high breakdown strength in BiFeO3-LaAlO3 ceramics" J. Mater. Sci.: Mater. El (2019)
[29]
Guo "Study of magnetodielectric effect and magnetic properties of BiFeO3-xBiYO3 ceramics" Mater. Lett. (2018) 10.1016/j.matlet.2018.02.042
[30]
Tiwari "Magnetoelectric and magnetodielectric coupling and microwave resonator characteristics of Ba0.5Sr0.5Nb2O6/CoCr0.4Fe1.6O4 multiferroic composite" Sci. Rep.-UK (2018) 10.1038/s41598-018-30132-2
[31]
Yang "High Curie temperature and enhanced magnetoelectric properties of the laminated Li0.058(Na0.535K0.48)0.942NbO3/Co0.6Zn0.4Fe1.7Mn0.3O4 composites" Sci. Rep.-UK (2017) 10.1038/srep44855
[32]
Liu "Influence of nickel-zinc ratio on microstructure, magnetic and dielectric properties of Ni(1–x)ZnxFe2O4 ferrites" J. Ceram. Process. Res. (2012)
[33]
Jiang "Influence of zinc concentration on structure, complex permittivity and permeability of Ni-Zn ferrites at high frequency" J. Magn. Magn. Mater. (2016) 10.1016/j.jmmm.2015.10.003
[34]
Atif "Studies on the magnetic, magnetostrictive and electrical properties of sol-gel synthesized Zn doped nickel ferrite" J. Alloy. Compd. (2011) 10.1016/j.jallcom.2011.02.163
[35]
Catalan "Magnetocapacitance without magnetoelectric coupling" Appl. Phys. Lett. (2006) 10.1063/1.2177543
[36]
Ning "Large dielectric constant and Maxwell-Wagner effects in BaTiO3/Cu composites" J. Am. Ceram. Soc. (2012) 10.1111/j.1551-2916.2011.04895.x
[37]
Shinde "DC resistivity of Ni-Zn ferrites prepared by oxalate precipitation method" Mater. Chem. Phys. (2008) 10.1016/j.matchemphys.2008.03.028
[38]
Wu "The DC resistivity of modified PZT ceramics" J. Phys. C: Solid State Phys. (1983) 10.1088/0022-3719/16/14/022
[39]
Akther Hossain "Colossal magnetoresistance in spinel type Zn1−xNixFe2O4" J. Appl. Phys. (2004) 10.1063/1.1762707
[40]
Multiferroic magnetoelectric composites: Historical perspective, status, and future directions

Ce-Wen Nan, M. I. Bichurin, Shuxiang Dong et al.

Journal of Applied Physics 2008 10.1063/1.2836410
[41]
Yao "Giant magnetodielectric effect in Terfenol-D/PZT magnetoelectric laminate composite" J. Appl. Phys. (2011) 10.1063/1.3603042
[42]
Mokhtari "Complex magnetoelectric effect in multiferroic composites: the case of PFN-PT/(Co, Ni)Fe2O4" J. Phys. D. Appl. Phys. (2019) 10.1088/1361-6463/ab40e3
[43]
Zhang "Enhancing magnetic field sensitivity and giant converse magnetoelectric effect in laminate composite of Terfenol-D and multilayer piezoelectric vibrator" J. Alloy. Compd. (2014) 10.1016/j.jallcom.2013.12.065
[44]
Zhou "Equivalent circuit model of converse magnetoelectric effect for the tri-layer magnetoelectric laminates with thermal and stress loadings" AIP Advances (2015) 10.1063/1.4939566
[45]
Leung "Ring-type electric current sensor based on ring-shaped magnetoelectric laminate of epoxy-bonded Tb0.3Dy0.7Fe1.92 short-fiber/NdFeB magnet magnetostrictive composite and Pb(Zr, Ti)O3 piezoelectric ceramic" J. Appl. Phys. (2010) 10.1063/1.3360349
[46]
Röbisch "Exchange biased magnetoelectric composites for magnetic field sensor application by frequency conversion" J. Appl. Phys. (2015) 10.1063/1.4913814
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Sensors and Actuators A: Physical
Ceramics International
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Published
May 01, 2022
Vol/Issue
550
Pages
169099
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Funding
National Natural Science Foundation of China Award: 12174004
Fundamental Research Funds for the Central Universities Award: 2018CBLY002
Cite This Article
Xi Yao, Jian-Ping Zhou, Xiangle Zhang (2022). Magnetodielectric mechanism and application of magnetoelectric composites. Journal of Magnetism and Magnetic Materials, 550, 169099. https://doi.org/10.1016/j.jmmm.2022.169099
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