Journal of Advanced Dielectrics, Volume. 12, Issue 5, 2244006(2022)

Enhanced piezoelectric properties and temperature stability in KNN-based textured ceramics

Yan Lin*, Ru Wang*, Jiawei Qu*, Shuo Gao*, Yi Zhang*, Junli Yan*, Jigong Hao*, Peng Li*, and Wei Li*
Author Affiliations
  • School of Materials Science and Engineering, Liaocheng University, Liaocheng 252059, P. R. China
  • show less

    Considering the advantages of high Curie temperature and environment-friendly nature of KNN piezoelectric ceramics, the limitation of weak piezoelectric response and their temperature sensitivity to applications is worth exploring. Herein, the <001> textured (1-x)(K0.5Na0.5)(Nb0.96Sb0.04)O3-x(Bi0.5Na0.5)HfO3(x = 0.01−0.045) lead-free ceramics were synthesized by templated grain-growth method. The high piezoelectric performance (d33 of 474 pC/N and strain of 0.21%) and excellent temperature stability (unipolar strain maintained within 4.3% change between 30C and 165C) were simultaneously achieved in the textured KNNS-0.03BNH ceramics. The high piezoelectric performance can be attributed to the summation of the crystallographic anisotropy and phase structure contributions in <001> textured ceramics. The superior temperature stability of piezoelectric properties can be interpreted by the contribution of crystal anisotropy to piezoelectric properties reduces the effect of phase transition on piezoelectric properties deterioration. This study provides an effective strategy for simultaneously achieving high piezoelectric properties and superior temperature stability in KNN-based textured ceramics.Considering the advantages of high Curie temperature and environment-friendly nature of KNN piezoelectric ceramics, the limitation of weak piezoelectric response and their temperature sensitivity to applications is worth exploring. Herein, the <001> textured (1-x)(K0.5Na0.5)(Nb0.96Sb0.04)O3-x(Bi0.5Na0.5)HfO3(x = 0.01−0.045) lead-free ceramics were synthesized by templated grain-growth method. The high piezoelectric performance (d33 of 474 pC/N and strain of 0.21%) and excellent temperature stability (unipolar strain maintained within 4.3% change between 30C and 165C) were simultaneously achieved in the textured KNNS-0.03BNH ceramics. The high piezoelectric performance can be attributed to the summation of the crystallographic anisotropy and phase structure contributions in <001> textured ceramics. The superior temperature stability of piezoelectric properties can be interpreted by the contribution of crystal anisotropy to piezoelectric properties reduces the effect of phase transition on piezoelectric properties deterioration. This study provides an effective strategy for simultaneously achieving high piezoelectric properties and superior temperature stability in KNN-based textured ceramics.

    Tools

    Get Citation

    Copy Citation Text

    Yan Lin, Ru Wang, Jiawei Qu, Shuo Gao, Yi Zhang, Junli Yan, Jigong Hao, Peng Li, Wei Li. Enhanced piezoelectric properties and temperature stability in KNN-based textured ceramics[J]. Journal of Advanced Dielectrics, 2022, 12(5): 2244006

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Research Articles

    Received: Jun. 27, 2022

    Accepted: Sep. 14, 2022

    Published Online: Dec. 5, 2022

    The Author Email: Lin Yan (leepeng0124@163.com), Wang Ru (leepeng0124@163.com), Qu Jiawei (leepeng0124@163.com), Gao Shuo (leepeng0124@163.com), Zhang Yi (leepeng0124@163.com), Yan Junli (leepeng0124@163.com), Hao Jigong (leepeng0124@163.com), Li Peng (leepeng0124@163.com), Li Wei (leepeng0124@163.com)

    DOI:10.1142/S2010135X22440064

    Topics