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Dielectric and piezoelectric properties of Pb(In1/2Nb1/2)O3-PbZrO3-PbTiO3ceramics via different poling methods

  • Yunyun Zhang
  • , Yewen Zhang
  • , Xin Liu
  • , Xiaodan Ren
  • , Mingyang Tang
  • , Ruoqi Jin
  • , Yike Wang
  • , Zhuo Xu
  • , Liwei D. Geng
  • , Yongke Yan
  • Xi'an Jiaotong University
  • Sichuan University

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

High-temperature piezoelectric materials require simultaneously high piezoelectric properties, high Curie temperature and high temperature stability. In this study, (0.75-x)Pb(In1/2Nb1/2)O3-0.25PbZrO3-xPbTiO3(PIN-PZ-PT) ceramics were prepared by conventional ceramic preparation process. By modifying lead zirconate titanate (PZT) materials with relaxor Pb(In1/2Nb1/2)O3(PIN), excellent piezoelectric properties and high Curie temperatures (TC) were achieved simultaneously. The most comprehensive performance is achieved in 0.32PIN-0.25PZ-0.43PT ceramics, which has great piezoelectric properties (d33of 396 pC/N, kpof 0.49, the unipolar strain Smaxof 0.21 %, and d33∗ of 516 pm/V under 40 kV/cm) and remarkable temperature stability (high TCof 360 °C and low dielectric loss of less than 1 % in the temperature range of 100–400 °C). To further enhance the performance of the 0.32PIN-0.25PZ-0.43PT ceramic, we adopt a novel high-temperature poling which involves poling at temperatures around 20 °C above the TCin the air, and obtain higher piezoelectric properties (d33of 446 pC/N, kp ∼ 0.57, Smax ∼ 0.23 %, and d33∗ of 530 pm/V) without sacrificing the temperature stability. This work could be a guide for the study of high temperature piezoelectric materials.

Original languageEnglish
JournalCeramics International
DOIs
StateAccepted/In press - 2025

Keywords

  • High-temperature poling
  • Morphotropic phase boundary
  • PIN-PZT
  • Piezoelectricity

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