AFe2O4/(Pb0.80Sr0.20)TiO3 (A = Mn, Ni and Co): a New Room-Temperature Magnetoelectric Multiferroic Bi-layered Composite Films

被引:0
作者
Kanchan Bala
R. K. Kotnala
Jyoti Shah
N. S. Negi
机构
[1] Himachal Pradesh University,Department of Physics
[2] CSIR,National Physical Laboratory
来源
Journal of Superconductivity and Novel Magnetism | 2018年 / 31卷
关键词
Magnetoelectric effect; Composite thin films; Metalorganic decomposition method; MnFe; O; NiFe; O; CoFe; O; Pb; Sr; TiO;
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摘要
The room temperature and magnetic field-dependent dielectric, impedance and magnetoelectric (ME) coupling effect of polycrystalline AFe2O4/(Pb0.80Sr0.20)TiO3 (A = Mn, Ni and Co) bi-layered composite films have been investigated. The structural and microstructural analyses using the X-ray diffraction (XRD), atomic force microscopy (AFM) and scanning electron microscopy (SEM) reveal the presence of homogenous growth of both tetragonal and spinel phases without any extra phase and diffusion in the AFO/PST20 bi-layered composite films. Our results show that all composite films exhibit ferroelectric as well as considerable magnetic, indicating magnetoelectric coupling effect. Our results show that the dielectric and impedance properties of AFO/PST20 bi-layered composite films can be manipulated by the magnetic field at room temperature, also indicating the existence of magnetoelectric coupling. The impedance (Z′ and Z″) Nyquist plots show distinct electrical responses with the magnetic field. The maximum magnetoelectric coefficient (α) is found to be αME∼ 239 and ∼ 195 mV/cm/Oe for the MFO/PST20 and CFO/PST20 bi-layered composite films, respectively. The above results show that the AFO/PST20 bi-layered composite films are room-temperature multiferroic material that can be potentially used in magnetoelectric devices.
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页码:3007 / 3023
页数:16
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共 267 条
[1]  
Eerenstein W(2006)undefined Nature 442 759-undefined
[2]  
Mathur ND(2015)undefined J. Phys. Condens. Matter 27 504002-undefined
[3]  
Scott JF(2016)undefined J. Alloys Compd. 663 480-undefined
[4]  
Ortega N(2016)undefined Sci. Rep. 6 34473-undefined
[5]  
Kumar A(2016)undefined Adv. Mater. 28 15-undefined
[6]  
Scott JF(1972)undefined Philips Res. Rep. 27 28-undefined
[7]  
Katiyar RS(2014)undefined Integr. Ferroelectr. 157 57-undefined
[8]  
Chen J(2017)undefined J. Supercond. Nov. Magn. 30 539-undefined
[9]  
Bai Y(2012)undefined Sci. Technol. Adv. Mater. 13 45001-undefined
[10]  
Nie C(2017)undefined J. Alloys Compd. 692 86-undefined