Analytical calculation of saturated strain near morphotropic phase boundary of polycrystalline ferroelectrics by the generalized inverse-pole-figure model
Kyong-Sik Ju (),
Hyok-Su Ryo,
Sung-Nam Pak,
Dok-Hwan Ri,
Myong-Il An,
Un-Chol Kim and
Chang-Jin Song
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Kyong-Sik Ju: Institute of Advanced Science, Kim Il Sung University
Hyok-Su Ryo: Faculty of Physics, Kim Il Sung University
Sung-Nam Pak: Kim Il Sung University
Dok-Hwan Ri: Institute of Advanced Science, Kim Il Sung University
Myong-Il An: Institute of Advanced Science, Kim Il Sung University
Un-Chol Kim: Institute of Advanced Science, Kim Il Sung University
Chang-Jin Song: Institute of Advanced Science, Kim Il Sung University
The European Physical Journal B: Condensed Matter and Complex Systems, 2019, vol. 92, issue 2, 1-5
Abstract:
Abstract The generalized inverse-pole-figure (IPF) model has been applied to analyze the saturated strain in polycrystalline ferroelectrics including composition near morphotropic phase boundary (MPB). Saturated strains of single-phase polycrystalline ferroelectrics with tetragonal and rhombohedral symmetry have been analytically calculated and the results have been confirmed by comparison with the results from preceding studies. In addition, the general formula to analyze relative saturated strain near MPBs of different multiple-phase polycrystalline ferroelectrics has been derived and the saturated strain near tetragonal-rhombohedral MPB has been calculated. Graphical abstract
Keywords: Solid; State; and; Materials (search for similar items in EconPapers)
Date: 2019
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DOI: 10.1140/epjb/e2019-90559-2
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