Excellent temperature stability of piezoelectric properties in PbNb 2 O 6 ‐based ceramics up to 450°C

Dense (Pb 0.92 Ba 0.08 )Nb 2 O 6 ‐ x mol% MnO 2 with 0.25 wt% TiO 2 ceramics with a single orthorhombic phase were synthesized through a conventional solid‐state reaction method. Excellent piezoelectric performance ( d 33  = 90 pC/N) and low dielectric loss (tan δ  = 0.5%) are achieved in Mn‐doped s...

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Veröffentlicht in:Journal of the American Ceramic Society 2024-07, Vol.107 (7), p.4914-4924
Hauptverfasser: Jin, Ruoqi, Ren, Xiaodan, Hu, Liqing, Tang, Mingyang, Xu, Zhuo, Yan, Yongke
Format: Artikel
Sprache:eng
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Zusammenfassung:Dense (Pb 0.92 Ba 0.08 )Nb 2 O 6 ‐ x mol% MnO 2 with 0.25 wt% TiO 2 ceramics with a single orthorhombic phase were synthesized through a conventional solid‐state reaction method. Excellent piezoelectric performance ( d 33  = 90 pC/N) and low dielectric loss (tan δ  = 0.5%) are achieved in Mn‐doped samples. Interestingly, the dielectric anomalies are observed in the temperature range of 300–400°C, which could be completely suppressed through Mn doping. The dielectric anomalies are associated with thermally activated domain wall motion, which could be constrained by the defect dipoles produced by Mn doping. More importantly, all samples experience about 12% performance degradation below 300°C, attributed to an accelerated aging process at elevated temperatures. After thermal aging, the samples exhibit excellent performance stability within the temperature range of 25–450°C, showing no further degradation. The results indicate that the PbNb 2 O 6 ‐based ceramics are promising high‐temperature piezoelectric materials for piezoelectric devices operating at temperatures up to 450°C.
ISSN:0002-7820
1551-2916
DOI:10.1111/jace.19790