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Overcoming the performance ceiling of textured piezoelectric ceramics

  • Jinjing Zhang
  • , Zidong Wang
  • , Shuai Yang*
  • , Ruixuan Liu
  • , Jianglei Chang
  • , Haijun Wu*
  • , Mingwen Wang
  • , Xiaoqing Chen
  • , Yang Zhang
  • , Xianghong Zhou
  • , Chenbo Zhang
  • , John Daniels
  • , Yuan Jinsheng Liu
  • , Shi Liu
  • , Yunfei Chang
  • , Xianjie Wang
  • , Xinya Feng
  • , Chunchun Li
  • , Nan Zhang
  • , Jinglei Li*
  • Shujun Zhang*, Fei Li*
*Corresponding author for this work
  • Xi'an Jiaotong University
  • Xi'an Jiaotong University
  • Tongji University
  • University of New South Wales
  • Westlake University
  • Harbin Institute of Technology
  • School of Physics, Harbin Institute of Technology
  • City University of Hong Kong

Research output: Contribution to journalArticlepeer-review

Abstract

textured piezoelectric ceramics could deliver the ultrahigh piezoelectricity of single crystals while retaining the mechanical robustness and cost-effectiveness of conventional ceramics, but after decades of effort, their piezoelectricity has not approached that of single crystals. We exploited compositional flexibility of textured ceramics, a critical advantage over single-crystal counterparts, using a machine-learning approach. Our samarium (sm)–doped Pb(In1/2Nb1/2)O3-Pb(sc1/2Nb1/2) O3-PbtiO3 textured ceramics exhibited an ultrahigh piezoelectric coefficient (d33) of 1720 picocoulombs per newton and a Curie temperature of 250°C. these values are comparable to, or even surpass, those of state-of-the-art single crystals. In situ x-ray diffraction and Rayleigh analysis indicate that their exceptional piezoelectricity is predominantly intrinsic rather than driven by domain switching. Leveraging these textured ceramics, we fabricated a piezoelectric accelerator that exhibits not only higher sensitivity but also substantially better reliability than its single-crystal counterparts.

Original languageEnglish
Pages (from-to)719-720
Number of pages2
JournalScience
Volume393
Issue number6812
DOIs
StatePublished - 13 Aug 2026
Externally publishedYes

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