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Phase structure, piezoelectric and multiferroic properties of SmCoO3-modified BiFeO3-BaTiO3 lead-free ceramics

机译:SmCoO3改性的BiFeO3-BaTiO3无铅陶瓷的相结构,压电和多铁性

摘要

(0.75-x)BiFeO3-0.25BaTiO(3)-xSmCoO(3) + 1 mol.% MnO2 lead-free multiferroic ceramics were synthesized by a conventional ceramic fabrication technique. The effects of SmCoO3 on phase structure, piezoelectricity and multiferroicity of the ceramics were studied. All the ceramics can be well sintered at a low sintering temperature of 960A degrees C. The crystalline structure of the ceramics is transformed from rhombohedral to tetragonal symmetry with increasing the amount of SmCoO3. A morphotropic phase boundary of rhombohedral and tetragonal phases is formed at x = 0.01-0.04. A small amount of SmCoO3 is shown to improve the ferroelectric, piezoelectric and magnetoelectric properties of the ceramics. For the ceramics with x = 0.01-0.03, enhanced resistivity (R 1.2 x 10(9) Omega cm to 2.1 x 10(9) Omega cm), piezoelectricity (d (33) 65 pC/N to 106 pC/N) and ferroelectricity (P (r) 6.38 mu C/cm(2) to 22.89 mu C/cm(2)) are obtained. The ferromagnetism of the materials is greatly enhanced by the doping of SmCoO3 such that a very high magnetoelectric coefficient of 742 mV/(cm Oe) is obtained at x = 0.01, suggesting a promising potential in multiferroic devices.
机译:通过常规陶瓷制造技术合成了(0.75-x)BiFeO3-0.25BaTiO(3)-xSmCoO(3)+ 1 mol%MnO2无铅多铁陶瓷。研究了SmCoO3对陶瓷相结构,压电性和多铁性的影响。可以在960A的低烧结温度下很好地烧结所有陶瓷。随着SmCoO3含量的增加,陶瓷的晶体结构从菱面体转变为四方对称。菱形和四方相的形态相边界在x = 0.01-0.04处形成。少量SmCoO3可以改善陶瓷的铁电,压电和磁电性能。对于x = 0.01-0.03的陶瓷,电阻率(R 1.2 x 10(9)Ωcm至2.1 x 10(9)Ωcm),压电性(d(33)65 pC / N至106 pC / N)和获得铁电性(P(r)6.38μC / cm(2)至22.89μC / cm(2))。掺杂SmCoO3可极大地增强材料的铁磁性,从而在x = 0.01时可获得742 mV /(cm Oe)的非常高的磁电系数,这表明在多铁性器件中潜力很大。

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