Influences of ScTa co-substitution on the properties of Ultra-high temperature Bi3TiNbO9-based piezoelectric ceramics

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Abstract

The effect of (Sc,Ta) doping on the properties of Bi3TiNbO 9-based ceramics was investigated. The (Sc,Ta) modification greatly improves the piezoelectric activity of Bi3TiNbO9-based ceramics and significantly decreases the dielectric dissipation. The d 33 of Bi3(Ti0.96Sc0.02Ta 0.02)NbO9 was found to be 12 pC/N, the highest value among the Bi3TiNbO9-based ceramics and almost 2 times as much as the reported d33 values of the pure BTNO ceramics (~6pC/N). The high TC (higher than 900 C) and stable piezoelectric and dielectric properties, demonstrating that the (Sc,Ta) modified Bi3Ti 1-xScx/2Tax/2NbO9-based material a candidate for ultrahigh temperature applications. The new (ScTa) modification has an important typical significance, the way should be used for reference in constructing the new high performance materials. © 2013 The Author(s).

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Gai, Z. G., Zhao, M. L., Su, W. B., Wang, C. L., Liu, J., & Zhang, J. L. (2013). Influences of ScTa co-substitution on the properties of Ultra-high temperature Bi3TiNbO9-based piezoelectric ceramics. Journal of Electroceramics, 31(1–2), 143–147. https://doi.org/10.1007/s10832-013-9833-9

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