Journal of Inorganic Materials, Volume. 40, Issue 5, 545(2025)

Defect Dipole Thermal-stability to the Electro-mechanical Properties of Fe Doped PZT Ceramics

Yuxuan SUN1,2, Zheng WANG1, Xue SHI1, Ying SHI1,2, Wentong DU1,2, Zhenyong MAN1, Liaoying ZHENG1, and Guorong LI1、*
Author Affiliations
  • 11. Key Laboratory of Inorganic Functional Materials and Devices, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
  • 22. Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
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    References(27)

    [1] IZZAH T N, AHMAD Z A, MOHAMAD H. Influence of sintering parameters on structural, dielectric and piezoelectric properties of Ca, La and Sr doped PZT (PCLSZT) electroceramics[J]. Mater. J. Sci.: Mater. Electron.(2021).

    [2] JAFFE H. Piezoelectric ceramics[J]. J. Am. Ceram.(1958).

    [3] FU H X, COHEN R E. Polarization rotation mechanism for ultrahigh electromechanical response in single-crystal piezoelectrics[J]. Nature(2000).

    [4] REN X B. Large electric-field-induced strain in ferroelectric crystals by point-defect-mediated reversible domain switching[J]. Nature(2004).

    [5] JONES J L, SLAMOVICH E B, BOWMAN K J. Domain texture distributions in tetragonal lead zirconate titanate by X-ray and neutron diffraction[J]. J. Appl. Phys.(2005).

    [6] LI Z, THONG H, ZHANG Y et al. Defect engineering in lead zirconate titanate ferroelectric ceramic for enhanced electromechanical transducer efficiency[J]. Adv. Funct. Mater.(2021).

    [7] NGUYEN T N, THONG H, ZHU Z et al. Hardening effect in lead-free piezoelectric ceramics[J]. J. Mater. Res.(2021).

    [8] SANGAWAR S R, PRAVEENKUMAR B, KUMAR H H et al. Effect of Fe and Fe-Ba substitution on the piezoelectric and dielectric properties of lead zirconate titanate ceramics[J]. Mater. Sci. Eng. B(2011).

    [9] CHEN C, WANG Y, LI Z Y et al. Evolution of electromechanical properties in Fe-doped (Pb,Sr)(Zr,Ti)O3 piezoceramics[J]. J. Adv. Ceram.(2021).

    [10] LIU Y X, LI Z, THONG H C et al. Grain size effect on piezoelectric performance in perovskite-based piezoceramics[J]. Acta Phys. Sin.(2020).

    [11] ZHANG D, ZENG J. The microstructure and electric properties of Bi3+ and Al3+ co-doped PZT ceramics[J]. Ferroelectrics(2018).

    [12] BRAJESH K, HIMANSHU A K, SHARMA H. Structural, dielectric relaxation and piezoelectric characterization of Sr2+ substituted modified PMS-PZT ceramic[J]. Physica. B. Condens. Matter(2012).

    [13] LIN J Y, CUI B H, CHENG J R et al. Achieving both large transduction coefficient and high Curie temperature of Bi and Fe co-doped PZT piezoelectric ceramics[J]. Ceram. Int.(2023).

    [14] LEE J K, YI J Y, HONG K S. The role of cation vacancies on micro-structure and piezoelectricity of lanthanum-substituted (Na1/2Bi1/2)TiO3 ceramics[J]. Jpn. J. Appl. Phys.(2004).

    [15] DESU S B, PAYNE D A. Interfacial segregation in perovskites: III, micro-structure and electrical properties[J]. J. Am. Ceram. Soc.(2010).

    [16] KALEM V, ÇAM İ, TIMUÇIN M. Dielectric and piezoelectric properties of PZT ceramics doped with strontium and lanthanum[J]. Ceram. Int.(2011).

    [17] LANGMAN R A, RUNK R B, BUTLER S R. Isothermal grain growth of pressure-sintered PLZT ceramics[J]. J. Am. Ceram. Soc.(1973).

    [18] YANG W W, ZENG H R, YAN F et al. Microstructure-driven excellent energy storage NaNbO3-based lead-free ceramics[J]. Ceram. Int.(2022).

    [19] UCHINO K, ZHENG J, CHEN Y et al. Loss mechanisms and high power piezoelectrics[J]. J. Mater. Sci.(2006).

    [20] PENG J, ZENG J, LI G et al. Softening-hardening transition of electrical properties for Fe3+-doped (Pb0.94Sr0.05La0.01)(Zr0.53Ti0.47)O3 piezoelectric ceramics[J]. Ceram. Int.(2017).

    [21] KUMARI N, MONGA S, ARIF M et al. Higher permittivity of Ni-doped lead zirconate titanate, Pb[(Zr0.52Ti0.48)(1-x)Nix]O3, ceramics[J]. Ceram. Int.(2019).

    [22] SUN X, DENG J, LIU L et al. Dielectric properties of BiAlO3-modified (Na, K, Li)NbO3 lead-free ceramics[J]. Mater. Res. Bull.(2016).

    [23] MCKINSTRY S T. Temperature dependence of the piezoelectric response in lead zirconate titanate films[J]. J. Appl. Phys.(2004).

    [24] LI C B W, THONG H C, LIU Y X et al. Thermally induced domain reconfiguration in ferroelectric alkaline niobate[J]. Adv. Funct. Mater.(2022).

    [25] HINTERSTEIN M, ROUQUETTE J, HAINES J et al. Structural description of the macroscopic piezo- and ferroelectric properties of lead zirconate titanate[J]. Phys. Rev. Lett.(2011).

    [26] KITTEL C. Theory of the structure of ferromagnetic domains in films and small particles[J]. Phys. Rev.(1946).

    [27] ANDRYUSHIN K, ANDRYUSHINA I, SADYKOV H et al. The influence of thermodynamic history and external influences on the electrophysical properties of ferropiezoceramic materials based on a multicomposition system PZT-PMN- PZN+SiO2[J]. J. Adv. Dielectr.(2020).

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    Yuxuan SUN, Zheng WANG, Xue SHI, Ying SHI, Wentong DU, Zhenyong MAN, Liaoying ZHENG, Guorong LI. Defect Dipole Thermal-stability to the Electro-mechanical Properties of Fe Doped PZT Ceramics[J]. Journal of Inorganic Materials, 2025, 40(5): 545

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    Paper Information

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    Received: May. 14, 2024

    Accepted: --

    Published Online: Sep. 2, 2025

    The Author Email: Guorong LI (grli@mail.sic.ac.cn)

    DOI:10.15541/jim20240244

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