4.8 Article

Universal Behavior and Electric-Field-Induced Structural Transition in Rare-Earth-Substituted BiFeO3

期刊

ADVANCED FUNCTIONAL MATERIALS
卷 20, 期 7, 页码 1108-1115

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.200902017

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资金

  1. UMD-NSF-MRSEC [DMR 0520471]
  2. ARO [W911NF-07-1-0410]
  3. W. M. Keck Foundation
  4. NEDO
  5. ARC Discovery Project
  6. DEST
  7. ONR [N00014-09-1-0302]
  8. Japan Society for the Promotion of Science

向作者/读者索取更多资源

The discovery of a universal behavior in rare-earth (RE)-substituted perovskite BiFeO3 is reported. The structural transition from the ferroelectric rhombohedral phase to an orthorhombic phase exhibiting a double-polarization hysteresis loop and substantially enhanced electromechanical properties is found to occur independent of the RE dopant species. The structural transition can be universally achieved by controlling the average ionic radius of the A-site cation. Using calculations based on first principles, the energy landscape of BiFeO3 is explored, and it is proposed that the origin of the double hysteresis loop and the concomitant enhancement in the piezoelectric coefficient is an electric-field-induced transformation from a paraelectric orthorhombic phase to the polar rhombohedral phase.

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