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Title: Transformation of hardening to softening behaviors induced by Sb substitution in Cuo-doped KNN-based piezoceramics
Authors: Liao, Y
Wang, D
Wang, H
Wang, T
Zheng, Q
Yang, J
Kwok, KW 
Lin, D
Issue Date: Jul-2019
Source: Ceramics international, July 2019, v. 45, no. 10, p. 13179-13186
Abstract: Pb-free piezoceramics of K 0.5 Na 0.5 Nb 1-x Sb x O 3 + 1 mol% CuO are synthesized via a solid-state reaction. Furthermore, the transformation of hardening to softening behaviors induced by Sb substitution is exhibited and the corresponding microscopic mechanism is proposed. The CuO-doped K 0.5 Na 0.5 NbO 3 ceramic without adding Sb exhibits extremely hardening characteristics (i.e., ultrahigh Q m of ∼2426, low tanδ of 0.32%, and pinched ferroelectric hysteresis loop)due to the formation of defect combinations ((Cu Nb ''' −V o •• ) ' and (V o •• −Cu Nb ''' −V o •• ) • ). Whereas, the addition of Sb dramatically reduces the levels of defect combinations, leading to obviously softening properties (d 33 > 210 pC N −1 , k p > 40%, low Q m , and normal single P-E hysteresis loop). Our results indicate that the decrease of defect combinations with Sb addition should be responsible for the hardening-softening transformation of piezoelectricity and ferroelectricity in CuO-doped K 0.5 Na 0.5 Nb 1-x Sb x O 3 piezoceramics.
Keywords: Defect structure
Hardening property
KNN ceramic
Softening property
Publisher: Pergamon Press
Journal: Ceramics international 
ISSN: 0272-8842
EISSN: 1873-3956
DOI: 10.1016/j.ceramint.2019.03.254
Rights: © 2019 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
© 2019. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Liao, Y., Wang, D., Wang, H., Wang, T., Zheng, Q., Yang, J., ... & Lin, D. (2019). Transformation of hardening to softening behaviors induced by Sb substitution in CuO-doped KNN-based piezoceramics. Ceramics International, 45(10), 13179-13186 is available at https://doi.org/10.1016/j.ceramint.2019.03.254.
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