Enhanced magnetodielectric behaviors at wide frequency range and high breakdown strength in BiFeO3–LaAlO3 ceramics
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Qianwen Zhang | Y. Pu | Jingwei Li | Ruike Shi | Xinyi Du | Min Chen | Lei Zhang | Run Li
[1] Y. Pu,et al. Novel Na0.5Bi0.5TiO3 based, lead-free energy storage ceramics with high power and energy density and excellent high-temperature stability , 2020 .
[2] Y. Pu,et al. Flash sintering of barium titanate , 2019, Ceramics International.
[3] Y. Pu,et al. Influence of BaZrO3 additive on the energy-storage properties of 0.775Na0.5Bi0.5TiO3-0.225BaSnO3 relaxor ferroelectrics , 2019, Journal of Alloys and Compounds.
[4] Deepika Tripathi,et al. Composition induced structural transition and improved magnetic behavior in La substituted BiFeO3 compound , 2019, Journal of Materials Science: Materials in Electronics.
[5] G. Zeng,et al. Effects of morphotropic phase boundary on the electric behavior of Er/Ti co-doped BiFeO3 ceramics , 2019, Scripta Materialia.
[6] X. Qi,et al. Enhanced ferroelectric, magnetic and magnetoelectric properties of multiferroic BiFeO3–BaTiO3–LaFeO3 ceramics , 2018, Ceramics International.
[7] Xiaoli Wang,et al. Room-temperature magnetic control of ferroelectric polarization and enhanced ferromagnetic properties in 0.8BiFeO3-BaTiO3 ceramic , 2018, Ceramics International.
[8] G. Murtaza,et al. Structural, surface morphology, dielectric and magnetic properties of holmium doped BiFeO3 thin films prepared by pulsed laser deposition , 2018, Thin Solid Films.
[9] Jiagang Wu,et al. Ultrahigh energy-storage potential under low electric field in bismuth sodium titanate-based perovskite ferroelectrics , 2018 .
[10] Guoqiang Tan,et al. Ferroelectric properties of BiFeO3 thin films by Sr/Gd/Mn/Co multi-doping , 2018 .
[11] R. Dwivedi,et al. Structural stability, enhanced magnetic, piezoelectric, and transport properties in (1-x)BiFeO3–(x)Ba0.70Sr0.30TiO3 nanoparticles , 2018 .
[12] Z. Hou,et al. Enhanced magnetization and bias voltage-dependent dielectric properties of Sm-doped BiFeO3 multiferroic nanofibers , 2018, Journal of Materials Science.
[13] Yongfei Cui,et al. High Energy Storage Density and Optical Transparency of Microwave Sintered Homogeneous (Na0.5Bi0.5)(1–x)BaxTi(1–y)SnyO3 Ceramics , 2018 .
[14] X. Tan,et al. Bismuth ferrite-based lead-free ceramics and multilayers with high recoverable energy density , 2018 .
[15] Liguang Wang,et al. Multiferroic properties of single-phase perovskite structure 0.8BiFeO3–0.2SrTiO3 ceramics synthesized using the Pechini method , 2018, Journal of Electroceramics.
[16] Yiming Zeng,et al. A coexistence of multi-relaxor states in 0.5BiFeO3–0.5BaTiO3 , 2017 .
[17] A. Thakur,et al. Effect of non-magnetic Al 3+ doping on structural, optical, electrical, dielectric and magnetic properties of BiFeO 3 ceramics , 2017 .
[18] Changhong Yang,et al. The microstructure, ferroelectric and dielectric behaviors of BiFeO3-Na0.5Bi0.5TiO3 based solid solution thin films , 2017 .
[19] Md. Fakhrul Islam,et al. Dy doped BiFeO3: A bulk ceramic with improved multiferroic properties compared to nano counterparts , 2017, 1706.10226.
[20] E. Jartych,et al. Compositional dependence of hyperfine interactions and magnetoelectric coupling in (BiFeO3)x-(BaTiO3)1–x solid solutions , 2017 .
[21] Guoqiang Tan,et al. Enhanced multiferroic properties in Pr-doped BiFe0.97Mn0.03O3 films , 2016 .
[22] Jianguo Zhu,et al. Multiferroic bismuth ferrite-based materials for multifunctional applications: Ceramic bulks, thin films and nanostructures , 2016 .
[23] Ashwini Kumar,et al. Effect of La and Ni substitution on structure, dielectric and ferroelectric properties of BiFeO 3 ceramics , 2016, Ceramics International.
[24] Shifeng Zhao,et al. Strong magnetoelectric coupling effect of BiFeO3/Bi5Ti3FeO15 bilayer composite films , 2016 .
[25] Jianguo Zhao,et al. Improved ferromagnetism and ferroelectricity of La and Co co-doped BiFeO3 ceramics with Fe vacancies , 2016 .
[26] Shifeng Zhao,et al. Enhanced ferromagnetism of Er-doped BiFeO3 thin films derived from rhombohedral-to-orthorhombic phase transformations , 2015 .
[27] R. Zuo,et al. Novel BiFeO3–BaTiO3–Ba(Mg1/3Nb2/3)O3 Lead-Free Relaxor Ferroelectric Ceramics for Energy-Storage Capacitors , 2015 .
[28] Guoqiang Tan,et al. Effect of CoFe2O4 layer and (Gd, Mn) co-substitution on multiferroic properties of BiFeO3 films , 2015 .
[29] C. Fu,et al. Effect of Ba Substitution on Microstructure, Dielectric and Ferroelectric Properties of BiFeO3 Ceramics , 2015 .
[30] S. Basu,et al. Enhanced multiferroic properties of Y and Mn codoped multiferroic BiFeO3 nanoparticles , 2015, Journal of Materials Science.
[31] D. Arnold. Composition-driven structural phase transitions in rare-earth-doped bifeo3 ceramics: a review , 2015, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[32] Xiaoyong Wei,et al. Microstructure and ferroelectric properties of Nb2O5-modified BiFeO3-BaTiO3 lead-free ceramics for energy storage , 2014 .
[33] Shifeng Zhao,et al. Improved ferroelectric and leakage current properties of Er-doped BiFeO3 thin films derived from structural transformation , 2014 .
[34] Guoqiang Tan,et al. Investigation of Tb-doping on structural transition and multiferroic properties of BiFeO3 thin films , 2014 .
[35] Dejun Li,et al. Enhanced magnetic and conductive properties of Ba and Co co-doped BiFeO3 ceramics , 2014 .
[36] P. Gupta,et al. Structural, magnetic and dielectric properties of Pr-modified BiFeO3 multiferroic , 2014 .
[37] R. Choudhary,et al. Impedance spectroscopy of Gd-doped BiFeO3 multiferroics , 2013 .
[38] Huaihe Song,et al. Phase transition and huge ferroelectric polarization observed in BiFe1−xGaxO3 thin films , 2013 .
[39] N. Verma,et al. Magnetodielectric properties of rare earth metal-doped BiFeO3 nanoparticles , 2013, Journal of Materials Science: Materials in Electronics.
[40] Qingyu Xu,et al. Preparation of multiferroic Co substituted BiFeO3 with enhanced coercive force and its application in sorption removal of dye molecules from aqueous solution , 2013 .
[41] T. Karthik,et al. Investigation of structural, magnetic and optical properties of rare earth substituted bismuth ferrite , 2013 .
[42] T. Shripathi,et al. Synthesis of single phase bismuth ferrite compound by reliable one-step method , 2013, Journal of Materials Science: Materials in Electronics.
[43] J. A. Moreira,et al. Room temperature structure and multiferroic properties in Bi0.7La0.3FeO3 ceramics , 2013 .
[44] J. Bielecki,et al. Structural and magnetic properties of isovalently substituted multiferroic BiFeO3: Insights from Raman spectroscopy , 2012 .
[45] Xiaomei Lu,et al. Multiferroic behaviour and the magneto-dielectric effect in Bi5FeTi3O15 thin films , 2012 .
[46] P. Uniyal,et al. Enhanced magnetoelectric properties in Bi0.95Ho0.05FeO3 polycrystalline ceramics , 2012 .
[47] Ming Li,et al. Structural transitions and enhanced ferroelectricity in Ca and Mn co-doped BiFeO3 thin films , 2011 .
[48] I. Reaney,et al. Angular dispersion of oblique phonon modes in BiFeO 3 from micro-Raman scattering , 2011 .
[49] Zhu Wang,et al. Effect of Eu substitution on the crystal structure and multiferroic properties of BiFeO3 , 2010 .
[50] John Wang,et al. Ferroelectric and Impedance Behavior of La- and Ti-Codoped BiFeO3 Thin Films , 2010 .
[51] Zhongqiang Hu,et al. Structural Transition and Multiferroic Properties of Eu-Doped BiFeO3 Thin Films: Structural Transition and Multiferroic Properties of Eu-Doped BiFeO3 , 2010 .
[52] R. Ramesh,et al. A Strain-Driven Morphotropic Phase Boundary in BiFeO3 , 2009, Science.
[53] A. Simões,et al. Rietveld analysys and electrical properties of lanthanum doped BiFeO3 ceramics , 2009 .
[54] Suk‐Joong L. Kang,et al. Temperature‐dependent Raman scattering studies of polycrystalline BiFeO3 bulk ceramics , 2009 .
[55] Yang Yang,et al. Structure properties of BiFeO3 films studied by micro-Raman scattering , 2008 .
[56] Ajay Gupta,et al. Raman scattering study of polycrystalline magnetoelectric BiFeO3 , 2008 .
[57] Philippe Ghosez,et al. Raman and infrared spectra of multiferroic bismuth ferrite from first principles , 2007 .
[58] H. Chan,et al. Raman scattering spectra and ferroelectric properties of Bi1−xNdxFeO3 (x=0–0.2) multiferroic ceramics , 2007 .
[59] S. Or,et al. Structural transformation and ferroelectromagnetic behavior in single-phase Bi1−xNdxFeO3 multiferroic ceramics , 2006 .
[60] C. Nan,et al. Synthesis and properties of multiferroic La-modified BiFeO3 ceramics , 2006 .
[61] C. Ong,et al. Effect of Ba doping on magnetic, ferroelectric, and magnetoelectric properties in mutiferroic BiFeO3 at room temperature , 2006 .
[62] Seong‐Hyeon Hong,et al. Effects of Nb-doping on electric and magnetic properties in multi-ferroic BiFeO3 ceramics , 2005 .
[63] R. D. Shannon. Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides , 1976 .
[64] R. C. Macridis. A review , 1963 .
[65] Y. Pu,et al. High energy-storage density under low electric fields and improved optical transparency in novel sodium bismuth titanate-based lead-free ceramics , 2020 .
[66] R. Choudhary,et al. Structural and electrical properties of 0.7(BiSmxFe1−xO3)–0.3(PbTiO3) composites , 2019, Applied Physics A.
[67] R. Zuo,et al. Enhanced energy storage properties in La(Mg1/2Ti1/2)O3-modified BiFeO3-BaTiO3 lead-free relaxor ferroelectric ceramics within a wide temperature range , 2017 .
[68] Jae Won Kim,et al. Effects of (Dy, Zn) co-doping on structural and electrical properties of BiFeO3 thin films , 2014 .
[69] G. Pezzotti,et al. Raman tensor elements for multiferroic BiFeO3with rhombohedralR3csymmetry , 2010 .