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Reseach Highlights
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Reseach Highlights:
1. A new synthesis route for (1-x) PFN-PT/x(Ca,Sr)ZrO₃ ceramic composites was developed.
Pure CaZrO₃ (CZ) and SrZrO₃ (SZ) powders were synthesized via sol-gel auto-combustion,
and PFN-PT ceramic was prepared by the solid-state method. Subsequently, composite
powders were prepared by ball milling the CZ(SZ) and PFN-PT powders in ethanol for 24
hours.
2. A novel co-doping strategy using (Ca,Sr)ZrO₃ significantly enhances the dielectric and
ferroelectric properties of PFN–PT ceramics by precisely engineering the critical
Morphotropic Phase Boundary (MPB). This approach yields superior polarization
performance, paving the way for advanced multifunctional electroceramic devices.
3. The co-doping effectively tunes the phase structure, leading to significantly enhanced
dielectric and ferroelectric properties. Optimal doping (x=0.04) results in a maximum
remanent polarization (Pr) of 34.26 μC/cm², showcasing potential for advanced
multifunctional electronic materials.