Personal Information

  • Doctoral Supervisor
  • Master Tutor
  • (副教授)
  • E-Mail:

  • Date of Employment:

    2016-12-01
  • Education Level:

    With Certificate of Graduation for Doctorate Study
  • Gender:

    Female
  • Professional Title:

    副教授
  • Status:

    Employed
  • Alma Mater:

    俄亥俄州立大学
  • Have Any Overseas Experience:

    No
  • Foreign Personnel or Not:

    No
  • Discipline:

    Materials Science and Engineering

Papers

Home > Research > Papers

Polarization Spinodal at Ferroelectric Morphotropic Phase Boundary

  • Date:2025-04-30
  • Title of Paper:Polarization Spinodal at Ferroelectric Morphotropic Phase Boundary
  • Journal:Physical Review Letters
  • Summary:Here, we report a new phenomenon of uniform and continuous transformation of a single polarization domain into alternating nanodomains of two polarization vectors with the same magnitude but different directions at ferroelectric morphotropic phase Boundary (MPB). The transformation is fully reversible and could enhance the piezoelectric coefficient d 33. Further free energy calculations illustrate that such a polarization “decomposition” process occurs within the region on the Landau free energy curve with respect to the polarization direction where the second derivative becomes negative, which is similar to spinodal instability in phase transformations such as spinodal ordering or isostructural phase separation (eg, spinodal decomposition). This “polarization spinodal” uncovers a new mechanism of polarization switching that may account for the ultrahigh ahysterestic piezoelectric strain at the MPB. This work …
  • Co-author:Xiaoqin Ke; Dong Wang; Xiaobing Ren; Yunzhi Wang
  • Volume:125
  • Page Number:127602
  • Translation or Not:No
  • Date of Publication:2020-09-14
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