• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 12, 4412 (2022)
DAI Shuyun1、*, ZHONG Shiqi2, ZHANG Huan2, ZHU Peishu2, LI Tian1, LIU Jie1, and ZHENG Xinghua2
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  • 1[in Chinese]
  • 2[in Chinese]
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    DAI Shuyun, ZHONG Shiqi, ZHANG Huan, ZHU Peishu, LI Tian, LIU Jie, ZHENG Xinghua. Preparation, Structure and Properties of X8R BaTiO3 Based Fine-Grained Ceramics[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(12): 4412 Copy Citation Text show less
    References

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    [4] JIA W X, HOU Y D, ZHENG M P, et al. Advances in lead-free high-temperature dielectric materials for ceramic capacitor application[J]. IET Nanodielectrics, 2018, 1(1): 3-16.

    [5] YUAN Y, ZHANG S R, YOU W N. Preparation of BaTiO3-based X7R ceramics with high dielectric constant by nanometer oxides doping method[J]. Materials Letters, 2004, 58(12/13): 1959-1963.

    [6] CHEN R Z, WANG X H, LI L T, et al. Effects of Nb/Co ratio on the dielectric properties of BaTiO3-based X7R ceramics[J]. Materials Science and Engineering: B, 2003, 99(1/2/3): 298-301.

    [7] KISHI H, KOHZU N, IGUCHI Y, et al. Study of occupational sites and dielectric properties of Ho-Mg and Ho-Mn substituted BaTiO3[J]. Japanese Journal of Applied Physics, 2000, 39(9B): 5533-5537.

    [8] CHEN L L, HUI K Z, WANG H X, et al. Effects of Ho2O3 doping and sintering temperature on the core-shell structure of X9R Nb-modified BaTiO3-(Bi0.5Na0.5)TiO3 ceramics[J]. Journal of the European Ceramic Society, 2019, 39(13): 3710-3715.

    [9] HUMERA N, ARSHAD F, RAZA A, et al. Dielectric and ferroelectric properties of X8R perovskite barium titanate for application in multilayered ceramics capacitors[J]. Journal of Materials Science: Materials in Electronics, 2022, 33(10): 7405-7422.

    [10] KISHI H, KOHZU N, SUGINO J, et al. The effect of rare-earth (La, Sm, Dy, Ho and Er) and Mg on the microstructure in BaTiO3[J]. Journal of the European Ceramic Society, 1999, 19(6/7): 1043-1046.

    [11] LI L X, YU J Y, LIU Y R, et al. Synthesis and characterization of high performance CaZrO3-doped X8R BaTiO3-based dielectric ceramics[J]. Ceramics International, 2015, 41(7): 8696-8701.

    [12] LI J H, WANG S F, HSU Y F, et al. Effects of Sc2O3 and MgO additions on the dielectric properties of BaTiO3-based X8R materials[J]. Journal of Alloys and Compounds, 2018, 768: 122-129.

    [13] LIU R Z, CHEN Z W, LU Z Y, et al. Effects of sintering temperature and Bi2O3, Y2O3 and MgO co-doping on the dielectric properties of X8R BaTiO3-based ceramics[J]. Ceramics International, 2022, 48(2): 2377-2384.

    [14] TSUR Y, HITOMI A, SCRYMGEOUR I, et al. Site occupancy of rare-earth cations in BaTiO3[J]. Japanese Journal of Applied Physics, 2001, 40(1): 255-258.

    [15] JAIN A, WANG Y G, SHI L N. Recent developments in BaTiO3 based lead-free materials for energy storage applications[J]. Journal of Alloys and Compounds, 2022, 928: 167066.

    [16] RANDALL C A, YOUSEFIAN P. Fundamentals and practical dielectric implications of stoichiometry and chemical design in a high-performance ferroelectric oxide: BaTiO3[J]. Journal of the European Ceramic Society, 2022, 42(4): 1445-1473.

    [17] ZHOU X H, ZHANG S R, YUAN Y, et al. Preparation of BaTiO3-based nonreducible X7R dielectric materials via nanometer powders doping[J]. Journal of Materials Science: Materials in Electronics, 2006, 17(2): 133-136.

    [19] GONG H L, WANG X H, ZHANG S P, et al. Grain size effect on electrical and reliability characteristics of modified fine-grained BaTiO3 ceramics for MLCCs[J]. Journal of the European Ceramic Society, 2014, 34(7): 1733-1739.

    [21] OHSATO H, VARGHESE J, KAN A, et al. Volume crystallization and microwave dielectric properties of indialite/cordierite glass by TiO2 addition[J]. Ceramics International, 2021, 47(2): 2735-2742.

    DAI Shuyun, ZHONG Shiqi, ZHANG Huan, ZHU Peishu, LI Tian, LIU Jie, ZHENG Xinghua. Preparation, Structure and Properties of X8R BaTiO3 Based Fine-Grained Ceramics[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(12): 4412
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