Dielectric and ferroelectric properties of AgSbO3-modified (Li,K,Na)(Nb,Ta)O3 lead-free piezoceramics

被引:12
作者
Liu, Qing [1 ,2 ]
Zhu, Fang-Yuan [1 ]
Zhang, Bo-Ping [2 ]
Li, Longtu [1 ]
Li, Jing-Feng [1 ]
机构
[1] Tsinghua Univ, State Key Lab New Ceram & Fine Proc, Sch Mat Sci & Engn, Beijing 100084, Peoples R China
[2] Univ Sci & Technol Beijing, Sch Mat Sci & Engn, Beijing 100083, Peoples R China
关键词
PIEZOELECTRIC PROPERTIES; CERAMICS; TEMPERATURE; DEPENDENCE;
D O I
10.1007/s10854-015-3022-3
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
(1 - x)Li-0.02(K0.48Na0.53)(0.98)(Nb0.8Ta0.2)O-3-xAgSbO(3) (abbreviated as LKNNT-xAS, 0.045 < x < 0.055) lead-free ceramics with a high relative density (similar to 95 %) were successfully fabricated by the conventional method. Only a small AgSbO3 composition interval of 0.25 mol% was implemented for the purpose of property enhancement via the precise phase control. Room temperature XRD patterns confirmed that two phase coexistent structure of orthorhombic and tetragonal phases was obtained and the volume fraction of orthorhombic phase decreased as AgSbO3 increased from 0.045 to 0.055. A relatively high d (33) value up to 289 pC/N was achieved in the LKNNT-0.0525AS ceramics. Meanwhile the planar electromechanical coupling factor k (p) , the remnant polarization P (r) and the relative dielectric constant epsilon (r) reached 0.42, 16.3 mu C/cm(2), 1967, respectively. Considering the electrical properties, AgSbO3 modified (Li,K,Na)(Nb,Ta)O-3 ceramics may be a potential candidate of lead-free piezoelectric ceramics.
引用
收藏
页码:9309 / 9315
页数:7
相关论文
共 50 条
  • [41] Electric Properties of SrTiO3 Modified (Na0.48K0.48Li0.04)Nb0.89Ta0.05Sb0.06O3 Lead-Free Ceramics
    Su, Hsiu-Hsien
    Hong, Cheng-Shong
    Tsai, Cheng-Che
    Chu, Sheng-Yuan
    [J]. ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY, 2016, 5 (10) : N67 - N71
  • [42] Dielectric and ferroelectric characterization of Na(Ta,Nb)O3 solid solution ceramics
    Chen, XM
    Lu, YT
    Jin, DZ
    Liu, XQ
    [J]. JOURNAL OF ELECTROCERAMICS, 2005, 15 (01) : 21 - 26
  • [43] Dielectric and Ferroelectric Characterization of Na(Ta,Nb)O3 Solid Solution Ceramics
    X. M. Chen
    Y. T. Lu
    D. Z. Jin
    X. Q. Liu
    [J]. Journal of Electroceramics, 2005, 15 : 21 - 26
  • [44] Sintering and electrical properties of La-modified (Na0.52K0.45Li0.03)1-3xLax(Nb0.88Sb0.09Ta0.03)O3 lead-free ceramics
    Du, Juan
    Xu, Zhijun
    Deng, Baojun
    Chu, Ruiqing
    Yi, Xiujie
    Zheng, Limei
    Li, Yuchao
    [J]. CERAMICS INTERNATIONAL, 2014, 40 (03) : 4319 - 4322
  • [45] Lead-free (K0.5Na0.5)0.95(LiSb)0.05Nb0.95O3-BaTiO3 piezoceramics
    Zang, Guo-Zhong
    Yi, Xiu-Jie
    Xu, Zhi-Jun
    Pu, Xi-Peng
    Fu, Peng
    Zhao, Li-Min
    [J]. JOURNAL OF ELECTROCERAMICS, 2010, 25 (01) : 85 - 88
  • [46] Lead-Free Relaxor Ferroelectric Na0.47K0.47Li0.06Nb0.94Sb0.06O3 Crystals for Optoelectronic Applications
    Ray, Geeta
    Sinha, Nidhi
    Singh, Budhendra
    Bdikin, Igor
    Kumar, Binay
    [J]. CRYSTAL GROWTH & DESIGN, 2015, 15 (04) : 1852 - 1860
  • [47] Characterization of potassium-modified Li0.12Na0.88Nb0.97Sb0.03O3 lead-free piezoceramics
    Peng, Zhihang
    Chen, Qiang
    Yan, Dongxu
    Xiao, Dinquan
    Zhu, Jianguo
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 582 : 834 - 838
  • [48] Temperature dependence of dielectric properties and domain structure of (K,Na)(Nb,Ta)O3 single crystal
    Ma, Hui
    Wang, Junjun
    Li, Jiaqi
    Hong, Zhiheng
    Liu, Danqing
    Cao, Wenping
    Wu, Fengmin
    Yang, Bin
    Chen, Chuntian
    [J]. FERROELECTRICS, 2022, 593 (01) : 1 - 9
  • [49] Effect of Li on the microstructure and electrical properties of (K0.17Na0.83)NbO3 lead-free piezoceramics
    Zang, Guo-Zhong
    Wang, Yan
    Yi, Xiu-Jie
    Du, Juan
    Xu, Zhi-Jun
    [J]. CURRENT APPLIED PHYSICS, 2011, 11 (02) : 223 - 226
  • [50] Effects of Ta Content on the Electrical Properties of Lead-Free (K0.44Na0.52Li0.04)(Nb0.96-xTaxSb0.04)O3 Ceramics
    Zhang, Zhiqiang
    Yang, Jie
    Liu, Zhifu
    Li, Yongxiang
    [J]. FERROELECTRICS, 2016, 490 (01) : 70 - 77