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朱立峰等:高居里温度铁酸秘基陶瓷的研究进展 ·967· perature stability.Ceram Int,2013,39(6):6707 [33]Sosnowska I,Zvezdin A K.Origin of the long period magnetic or- [29]Zheng Q J,Guo Y Q,Lei F Y,et al.Microstructure,ferroelec- dering in BiFeO.J Magn Magn Mater,1995,140-144:167 tric,piezoelectric and ferromagnetic properties of BiFe-Ba- [34]Gippius AA,Khozeev DF,Morozova EN,et al.Observation of Ti-Bi(Zna.sTio.s)O lead-free multiferroic ceramics.J Mater spin modulated magnetic structure at Bi-and Fe-sites in BiFeO Sci Mater Electron,2014,25(6):2638 by nuclear magnetic resonance.Phys Status SolidiA,2003,196 [30]Chen J Y,Zhang B P,Zhu L F,et al.Enhanced insulation re- (1):221 sistance and electrical properties of BiFe(ZnosTios),03- [35]Zhu L F,Zhang B P,Zhang Z C,et al.Piezoelectric,ferroelec- BaTiO,lead-free piezoceramics.Ceram Int,2018,44(7):8409 tric and ferromagnetic properties of(1-x)BiFe03-xBaTiO [31]Zhu L F,Zhang B P,Duan J Q,et al.Enhanced piezoelectric lead-free ceramics near morphotropic phase boundary.I Mater Sci and ferroelectric properties of BiFe0-BaTiO lead-free ceramics Mater Electron,2018,29(3):2307 by optimizing the sintering temperature and dwell time.Eur Ce. [36]Dai Z H,Liu L,Ying G B,et al.Structural,dielectric and ram Soe,2018,38(10):3463 magnetic properties of Mn modified xBiFe-(1-)BaTiO ce- [32]Qin Y F.Yang J.Xiong P,et al.The effects of quenching on ramics.J Magn Magn Mater,2017,434:10 electrical properties,and leakage behaviors of 0.67BiFe0,- [37]Liu X H,Xu Z,Qu S B,et al.Ferroelectric and ferromagnetic 0.33 BaTiO,solid solutions.J Mater Sci Mater Electron,2018, properties of Mn-doped 0.7BiFeO-0.3BaTiO,solid solution. 29(9):7311 Ceram Int,2008,34(4):797朱立峰等: 高居里温度铁酸铋基陶瓷的研究进展 perature stability. Ceram Int, 2013, 39(6): 6707 [29] Zheng Q J, Guo Y Q, Lei F Y, et al. Microstructure, ferroelec鄄 tric, piezoelectric and ferromagnetic properties of BiFeO3 鄄鄄 Ba鄄 TiO3 鄄鄄 Bi(Zn0郾 5 Ti0郾 5 )O3 lead鄄free multiferroic ceramics. J Mater Sci Mater Electron, 2014, 25(6): 2638 [30] Chen J Y, Zhang B P, Zhu L F, et al. Enhanced insulation re鄄 sistance and electrical properties of BiFe1 - x ( Zn0郾 5 Ti0郾 5 ) xO3 鄄鄄 BaTiO3 lead鄄free piezoceramics. Ceram Int, 2018, 44(7): 8409 [31] Zhu L F, Zhang B P, Duan J Q, et al. Enhanced piezoelectric and ferroelectric properties of BiFeO3 鄄鄄BaTiO3 lead鄄free ceramics by optimizing the sintering temperature and dwell time. J Eur Ce鄄 ram Soc, 2018, 38(10): 3463 [32] Qin Y F, Yang J, Xiong P, et al. The effects of quenching on electrical properties, and leakage behaviors of 0郾 67BiFeO3 鄄鄄 0郾 33BaTiO3 solid solutions. J Mater Sci Mater Electron, 2018, 29(9): 7311 [33] Sosnowska I, Zvezdin A K. Origin of the long period magnetic or鄄 dering in BiFeO3 . J Magn Magn Mater, 1995, 140鄄144: 167 [34] Gippius A A, Khozeev D F, Morozova E N, et al. Observation of spin modulated magnetic structure at Bi鄄 and Fe鄄sites in BiFeO3 by nuclear magnetic resonance. Phys Status Solidi A, 2003, 196 (1): 221 [35] Zhu L F, Zhang B P, Zhang Z C, et al. Piezoelectric, ferroelec鄄 tric and ferromagnetic properties of ( 1 - x) BiFeO3 鄄鄄 xBaTiO3 lead鄄free ceramics near morphotropic phase boundary. J Mater Sci Mater Electron, 2018, 29(3): 2307 [36] Dai Z H, Liu L, Ying G B, et al. Structural, dielectric and magnetic properties of Mn modified xBiFeO3 鄄鄄(1 - x)BaTiO3 ce鄄 ramics. J Magn Magn Mater, 2017, 434: 10 [37] Liu X H, Xu Z, Qu S B, et al. Ferroelectric and ferromagnetic properties of Mn鄄doped 0郾 7BiFeO3 鄄鄄 0郾 3BaTiO3 solid solution. Ceram Int, 2008, 34(4): 797 ·967·
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