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January 17, 2026Applied Physics Letters0 citations

Negative in-plane Poisson's ratio in 001-textured PMN-PZT ceramics

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MTMingyang TangLHLiqing HuGXGuangya Xie

Key Points

  • The aim is to investigate the negative in-plane Poisson's ratio in [001]-textured PMN-PZT ceramics and its implications.
  • Ceramics fabricated using templated grain growth with BaTiO3.
  • Full matrices of dielectric, elastic, and piezoelectric parameters obtained via resonance–antiresonance method.
  • Experimental confirmation of properties through strain–stress measurements and finite element analysis.
  • Characterization of properties including quasi-static piezoelectric coefficient and electromechanical coupling factor.
  • Quasi-static piezoelectric coefficient d33 measured at 1490 pC/N.
  • Electromechanical coupling factor k33 found to be 0.92.
  • Negative Poisson's ratio of ν12 = −0.13 indicating strong auxetic behavior.
  • Behavior attributed to stress-induced polarization rotation along the ⟨110⟩ direction.

Abstract

001-textured 0.4P(Mg1/3Nb2/3)O3-0.25PbZrO3-0.35PbTiO3 (PMN-PZT) ceramics were fabricated by templated grain growth using 3 vol. % BaTiO3. Full matrices of dielectric (εij), elastic (sij, cij), and piezoelectric (dij) parameters were obtained by the resonance–antiresonance method. The ceramics exhibit a quasi-static piezoelectric coefficient d33 of 1490 pC/N and an electromechanical coupling factor k33 of 0.92, approaching the performance levels of piezoelectric single crystals. Notably, the textured PMN-PZT demonstrates an in-plane negative Poisson's ratio of ν12 = −0.13, representing a strong auxetic behavior that has been experimentally confirmed through direct strain–stress measurement. This distinctive characteristic is further corroborated by both laser scanning vibrometer and finite element analysis. Theoretical interpretation suggests that the negative Poisson's ratio stems primarily from stress-induced polarization rotation along the ⟨110⟩ direction. In 001-textured ceramics, the transverse direction inherently contains this orientation, typically resulting in a low or negative Poisson's ratio. This abnormal Poisson's ratio property may affect device design approaches for transducers, sensors, and energy harvesting applications.

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Cite This Study

Tang et al. (2026) studied this question.

synapsesocial.com/papers/696b26d7d2a12237a934a0c3https://doi.org/10.1063/5.0309721
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