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Journal of Synthetic Crystals ›› 2026, Vol. 55 ›› Issue (1): 93-102.DOI: 10.16553/j.cnki.issn1000-985x.2025.0112

• Research Articles • Previous Articles     Next Articles

Preparation of BST-BZT Laminated Relaxor Ferroelectric Ceramics and Their Electrocaloric Effect

XUE Fei(), TIAN Yahui(), JIN Ling   

  1. School of Information Engineering,Jiangxi Institute of Technology,Nanchang 330098,China
  • Received:2025-05-26 Online:2026-01-20 Published:2026-02-05
  • Contact: TIAN Yahui

Abstract: Lead-free relaxor ferroelectric based laminated ceramics are one of the important choices for environmentally friendly electrocaloric solid-state refrigeration devices. In this study, the x(Ba0.65Sr0.35)TiO3-(1-x)Ba(Zr0.2Ti0.8)O3(0.8BST-0.2BZT, x=0.8; 0.2BST-0.8BZT, x=0.2) thick films were prepared via tape-casting process, and the laminated ceramics of 0.8BST-0.2BZT/0.2BST-0.8BZT/0.8BST-0.2BZT were constructed using a stacking process. Meanwhile, 0.8BST-0.2BST and 0.2BST-0.8BZT ceramics were prepared by solid-state reaction for comparison, and their microstructure, dielectric temperature characteristics, ferroelectricity, and electrocaloric effects were studied. The research results indicate that laminated ceramics have more pronounced dielectric relaxation characteristics and larger polarization difference (Ps-Pr). The significant electrocaloric effect (ΔT=0.9 K) and wide broad working temperature span (Tspan=50 ℃) of laminated ceramics were measured using indirect measurements under an electric field of 50 kV/cm. This result is further verified by direct measurements under 25 kV/cm, and significant electrocaloric temperature change (ΔT=0.25 K) and Tspan (>45 ℃) were observed. This work demonstrates that the developed laminated ceramics possess excellent temperature stability and wide temperature range adaptability, showing great potential for electrocaloric cooling applications.

Key words: relaxor ferroelectric; laminated ceramics; electrocaloric effect; working temperature span; direct measurement; indirect measurement

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