• Journal of Synthetic Crystals
  • Vol. 49, Issue 6, 1016 (2020)
YANG Xiaoming1,2,*, LIU Ying1, WANG Zujian1,2, SU Rongbing1,2..., HE Chao1,2 and LONG Xifa1,2|Show fewer author(s)
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: Cite this Article
    YANG Xiaoming, LIU Ying, WANG Zujian, SU Rongbing, HE Chao, LONG Xifa. Effect of La3+ Doping on Energy Storage Performance of Pb(Lu1/2Nb1/2)O3 Antiferroelectric Single Crystal[J]. Journal of Synthetic Crystals, 2020, 49(6): 1016 Copy Citation Text show less
    References

    [1] Yang X, Zhuo F, Wang C, et al. Tunable pyroelectricity, depolarization temperature and energy harvesting density in Pb(Lu0.5Nb0.5)O3-xPbTiO3 ceramics[J].Acta Materialia,2020,186: 523-532.

    [2] Wang H, Liu Y, Yang T, et al. Ultrahigh energy-storage density in antiferroelectric ceramics with field-induced multiphase transitions[J].Advanced Functional Materials,2019,29(7): 1807321.

    [3] Zhuo F, Li Q, Zhou Y, et al. Large field-induced strain, giant strain memory effect, and high thermal stability energy storage in (Pb,La)(Zr,Sn,Ti)O3 antiferroelectric single crystal[J].Acta Materialia,2018,148: 28-37.

    [4] Peng B, Fan H, Zhang Q. A giant electrocaloric effect in nanoscale antiferroelectric and ferroelectric phases coexisting in a relaxor Pb0.8Ba0.2ZrO3 thin film at room temperature[J].Advanced Functional Materials,2013,23(23): 2987-2992.

    [6] Park Y, Knowles K M, Cho K. Successive phase transitions in the highly ordered complex perovskite Pb(Lu1/2Nb1/2)O3[J].Phase Transitions,1999,68(2): 411-421.

    [7] Shen D, Li X, Wang Z, et al. New binary (1-x)Ba(Lu1/2Nb1/2)O3-xPbTiO3 solid solution with morphotropic phase boundary[J].Journal of the European Ceramic Society,2012,32(5): 1077-1083.

    [8] Liu Y, Li X, Wang Z, et al. A new (1-x)Pb(Lu1/2Nb1/2)O3-xPbTiO3 binary ferroelectric crystal system with high Curie temperature[J].CrystEngComm,2013,15(8): 1643-1650.

    [9] Liu Y, Long X. Growth and characterization of a new lead lutetium niobate with lead titanate ferroelectric crystal[J].Journal of Inorganic Materials,2014,29(1): 47-51.

    [10] Yang X, Liu Y, He C, et al. La-modified Pb(Lu1/2Nb1/2)O3 antiferroelectric ceramics with high energy storage density[J].Journal of the European Ceramic Society,2015,35(15): 4173-4180.

    [11] Yang X, He C, Liu Y, et al. Structure and properties of (NaxLaxPb1-2x)(Lu1/2Nb1/2)O3 antiferroelectric ceramics[J].Materials & Design,2016,92: 330-334.

    [12] Yang X, Zhuo F, Wang C, et al. High energy storage density and ultrafast discharge in lead lutetium niobate based ceramics[J].Journal of Materials Chemistry A,2019,7(14): 8414-8422.

    [13] Park S E, Shrout T R. Ultrahigh strain and piezoelectric behavior in relaxor based ferroelectric single crystals[J].Journal of Applied Physics,1997,82(4): 1804-1811.

    [16] Liu Y, Yang X, He C, et al. Super-lattice structure and phase evolution of Pb(Lu0.5Nb0.5)O3-PbTiO3 single crystal with low PbTiO3[J].Crystals,2018,8(2): 50.

    [17] Xia Z, Li Q. Phase transformation in (0.90-x)Pb(Mg1/3Nb2/3)O3-xPbTiO3-0.1PbZrO3 piesoelectric ceramic: X-ray diffraction and raman investigation[J].Solid State Communications,2007,142(6): 323-328.

    [18] Zheng D, Zuo R. Relaxor-normal ferroelectric phase transition and significantly enhanced electromechanical strain behavior in Bi(Ni1/2Ti1/2)O3-PbTiO3-Pb(Mg1/3Nb2/3)O3 ternary system close to the morphotropic phase boundary[J].Journal of the European Ceramic Society,2015,35(13): 3485-3493.

    [19] Park Y, Cho K. Dielectric-state analysis in solid-solution Pb(Yb1/2Ta1/2)O3-Pb(Lu1/2Nb1/2)O3[J].Journal of the American Ceramic Society,2000,83(1): 135-140.

    [20] Rout D, Subramanian V, Hariharan K, et al. A comparative study of dielectric and Raman spectroscopy of Pb(Yb1/2Ta1/2)O3 and Pb(Yb1/2Nb1/2)O3[J].Solid State Communications,2007,141(4): 192-197.

    [21] Kwon J R, Choo W K. The antiferroelectric crystal structure of the highly ordered complex perovskite Pb(Yb1/2Nb1/2)O3[J].Journal of Physics-Condensed Matter,1991,3(13): 2147-2155.

    [22] Bokov A A, Shonov V Y, Rayevsky I P, et al. Compositional ordering and phase transitions in Pb(Yb0.5Nb0.5)O3[J].Journal of Physics-Condensed Matter,1993,5(31): 5491-5504.

    [23] Pan M J, Park S E, Markowski K A, et al. Electric field induced phase transition in lead lanthanum stannate zirconate titanate (PLSnZT) antiferroelectrics: Tailoring properties through compositional modification[J].Ferroelectrics,1998,215(1-4): 153-167.

    [24] Hao X, Wang Y, Zhang L, et al. Composition-dependent dielectric and energy-storage properties of (Pb, La)(Zr,Sn,Ti)O3 antiferroelectric thick films[J].Applied Physics Letters,2013,102(16): 163903.

    [25] Yang X, He C, Liu Y, et al. Antiferroelectric single crystal of La0.011Pb0.984(Lu1/2Nb1/2)O3 with high energy storage density[J].Ceramics International,2016,42(8): 10472-10475.

    [26] Yang X, He C, Liu Y, et al. Structural and electrical characteristics of (1-x)Pb(Lu1/2Nb1/2)O3-xPbTiO3 ceramics with low PbTiO3[J].Journal of the American Ceramic Society,2016,99(10): 3325-3329.

    [27] Zhuo F, Li Q, Qiao H, et al. Field-induced phase transitions and enhanced double negative electrocaloric effects in (Pb,La)(Zr,Sn,Ti)O3 antiferroelectric single crystal[J].Applied Physics Letters,2018,112(13): 133901.

    [28] Liu X, Li Y, Hao X. Ultra-high energy-storage density and fast discharge speed of (Pb0.98-xLa0.02Srx)(Zr0.9Sn0.1)0.995O3 antiferroelectric ceramics prepared via the tape-casting method[J].Journal of Materials Chemistry A,2019,7(19): 11858-11866.

    YANG Xiaoming, LIU Ying, WANG Zujian, SU Rongbing, HE Chao, LONG Xifa. Effect of La3+ Doping on Energy Storage Performance of Pb(Lu1/2Nb1/2)O3 Antiferroelectric Single Crystal[J]. Journal of Synthetic Crystals, 2020, 49(6): 1016
    Download Citation