A diffraction-plane-transformation model for quantitatively evaluating 90° domain evolution in tetragonal BS-PT piezoelectric ceramic
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference31 articles.
1. Major contributor to the large piezoelectric response in (1 − x)Ba(Zr0.2Ti0.8)O3 − x(Ba0.7Ca0.3)TiO3 ceramics: Domain wall motion
2. Role of 90° domains in lead zirconate titanate thin films
3. The role of nonstoichiometry in 180° domain switching of LiNbO3 crystals
4. The contribution of 180° domain wall motion to dielectric properties quantified from in situ X-ray diffraction
5. Preparation and Characterization of High Temperature Perovskite Ferroelectrics in the Solid-Solution (1-x)BiScO3–xPbTiO3
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1. Quantitative domain evaluation in rhombohedral BS-PT piezoelectric ceramics via diffraction-plane-transformation model;Applied Physics Letters;2023-12-04
2. In-situ measurement of thermal depolarization in tetragonal BS-PT piezoelectric ceramics;Journal of Alloys and Compounds;2023-12
3. La 2O 3-modified BiYbO 3–Pb(Zr,Ti)O 3 ternary piezoelectric ceramics with enhanced electrical properties and thermal depolarization temperature;Journal of Advanced Ceramics;2023-08
4. Review of BiScO3-PbTiO3 piezoelectric materials for high temperature applications: fundamental, progress, and perspective;Progress in Materials Science;2023-02
5. Origin of the thickness-dependent electric properties of BiScO3-PbTiO3 piezoceramics near the morphotropic phase boundary;Ceramics International;2021-12
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