Structural, Dielectric and Ferroelectric Properties of Lead-free BCZT Ceramics Elaborated by Low-temperature Hydrothermal Processing
Zouhair Hanani, Daoud Mezzane, Mbarek Amjoud, Yaovi Gagou, Khalid, Hoummada, Carine Perrin, Anna G. Razumnaya, Zdravko Kutnjak, Adnane Bouzina,, Mimoun El Marssi, Mohamed Goune, Brigita Rozic

TL;DR
This study demonstrates that low-temperature hydrothermal processing can produce lead-free BCZT ceramics with excellent dielectric and ferroelectric properties, significantly reducing synthesis temperature compared to traditional methods.
Contribution
It introduces a low-temperature hydrothermal synthesis method for BCZT ceramics that achieves high-quality properties at much lower temperatures than conventional techniques.
Findings
High dielectric and ferroelectric properties at 160°C synthesis.
Single perovskite phase with orthorhombic and tetragonal coexistence.
Enhanced properties with increased grain size and density.
Abstract
Lead-free Ba0.85Ca0.15Zr0.10Ti0.90O3 (BCZT) ceramics have demonstrated excellent dielectric, ferroelectric and piezoelectric properties in comparison to lead-based materials. The synthesis of pure and crystalline BCZT nanopowders at low temperatures of 25, 80 and 160 C was reported previously by using a sol-gel method followed by a hydrothermal route. In this study, the structural, dielectric and ferroelectric properties of sintered BCZT ceramics at 1250 {\deg}C for 10h were investigated. XRD measurements revealed the presence of a single perovskite phase at room temperature with the coexistence of the orthorhombic and tetragonal symmetries. The increase of grain size and the ceramic density in BCZT ceramics result in an enhancement of the dielectric and ferroelectric properties of BCZT ceramics. More interestingly, the synthesis temperature of BCZT powders with high dielectric and…
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