Strain-driven phase transitions and associated dielectric/piezoelectric anomalies in BiFeO3 thin films

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Abstract

Strain-driven phase transitions and related intrinsic polarization, dielectric, and piezoelectric properties for single-domain films were studied for BiFeO3 using phenomenological Landau-Devonshire theory. A stable and mixed structure between tetragonal and rhombohedral-like (monoclinic) phases is predicted at a compressive misfit strain of um =-0.0382 without an energy barrier. For a tensile misfit strain of um =0.0272, another phase transition between the monoclinic and orthorhombic phases was predicted with sharply high dielectric and piezoelectric responses. © 2010 American Institute of Physics.

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Huang, C. W., Chu, Y. H., Chen, Z. H., Wang, J., Sritharan, T., He, Q., … Chen, L. (2010). Strain-driven phase transitions and associated dielectric/piezoelectric anomalies in BiFeO3 thin films. Applied Physics Letters, 97(15). https://doi.org/10.1063/1.3499658

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