Giant strain with ultra-low hysteresis and high temperature stability in grain oriented lead-free K0.5Bi0.5TiO3-BaTiO3-Na0.5Bi0.5TiO3 piezoelectric materials

We synthesized grain-oriented lead-free piezoelectric materials in (K 0.5 Bi 0.5 TiO 3 -BaTiO 3 -xNa 0.5 Bi 0.5 TiO 3 (KBT-BT-NBT) system with high degree of texturing along the [001]c (c-cubic) crystallographic orientation. We demonstrate giant field induced strain (~0.48%) with an ultra-low hyster...

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Veröffentlicht in:Scientific reports 2015-02, Vol.5 (1), p.8595-8595, Article 8595
Hauptverfasser: Maurya, Deepam, Zhou, Yuan, Wang, Yaojin, Yan, Yongke, Li, Jiefang, Viehland, Dwight, Priya, Shashank
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Sprache:eng
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Zusammenfassung:We synthesized grain-oriented lead-free piezoelectric materials in (K 0.5 Bi 0.5 TiO 3 -BaTiO 3 -xNa 0.5 Bi 0.5 TiO 3 (KBT-BT-NBT) system with high degree of texturing along the [001]c (c-cubic) crystallographic orientation. We demonstrate giant field induced strain (~0.48%) with an ultra-low hysteresis along with enhanced piezoelectric response (d 33 ~ 190pC/N) and high temperature stability (~160°C). Transmission electron microscopy (TEM) and piezoresponse force microscopy (PFM) results demonstrate smaller size highly ordered domain structure in grain-oriented specimen relative to the conventional polycrystalline ceramics. The grain oriented specimens exhibited a high degree of non-180° domain switching, in comparison to the randomly axed ones. These results indicate the effective solution to the lead-free piezoelectric materials.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep08595