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http://dx.doi.org/10.4313/JKEM.2014.27.12.803

A-site Non-stoichiometric Effects of Bi0.5(Na0.78K0.22)0.5TiO3 Ceramics on the Dielectric and Electrical Properties  

Park, Jung Soo (Intelligent Electronic Component Team, Korea Institute of Ceramic Engineering and Technology)
Lee, Ku Tak (Intelligent Electronic Component Team, Korea Institute of Ceramic Engineering and Technology)
Yun, Ji Sun (Intelligent Electronic Component Team, Korea Institute of Ceramic Engineering and Technology)
Cho, Jeong Ho (Intelligent Electronic Component Team, Korea Institute of Ceramic Engineering and Technology)
Jeong, Young Hun (Intelligent Electronic Component Team, Korea Institute of Ceramic Engineering and Technology)
Paik, Jong Hoo (Intelligent Electronic Component Team, Korea Institute of Ceramic Engineering and Technology)
Publication Information
Journal of the Korean Institute of Electrical and Electronic Material Engineers / v.27, no.12, 2014 , pp. 803-808 More about this Journal
Abstract
$Bi_{0.5+x}(Na_{0.78}K_{0.22})_{0.5-3x}TiO_3$ ceramics with an excess $Bi^{3+}$ and a deficiency of $Na^+$ and $K^+$ were synthesized by a conventional solid state reaction method. The structure and morphology of $Bi_{0.5+x}(Na_{0.78}K_{0.22})_{0.5-3x}TiO_3$ ceramics were characterized by X-ray diffraction and field emission scanning electron microscopy. The electric polarization and mechanical strain induced by external electric field, and the temperature dependence of dielectric constant were investigated. These results demonstrated that an ergodic relaxor phase can be induced by controls of the mole ratio of $Bi^{3+}$, $Na^+$ and $K^+$. A phase boundary between non-ergodic and ergodic relaxor phases can be observed at ambient temperature. The ergodic relaxor phase can be transferred to the ferroelectric phase by application of the electric field. The stability of the induced ferroelectric phases strongly depends on the mole ratio of $Bi^{3+}$, $Na^+$ and $K^+$. The maximum strain of 0.31% was observed in $Bi_{0.51}(Na_{0.78}K_{0.22})_{0.47}TiO_3$ ceramics sintered at $1,150^{\circ}C$ for 2 h.
Keywords
Lead-free; Dielectric function; Electrical properties; $Bi_{0.5+x}(Na_{0.78}K_{0.22})_{0.5-3x}TiO_3$;
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1 N. B. Do, H. D. Jang, I. Hong, H. S. Han, D. T. Le, W. P. Tai, and J. S. Lee, Ceram. Int., 38, S359 (2012).   DOI
2 J. Rodel, W. Jo, K. T. P. Seifert, E. M. Anton, T. Granzow, and D. Damjanovic, J. Am. Ceram. Soc., 92, 1153 (2009).   DOI   ScienceOn
3 J. H. Cho, Y. H. Jeong, J. H. Nam, J. S. Yun, and Y. J. Park, Jpn. J. Appl. Phys., 52, 101501 (2013).   DOI
4 K. Yoshii, Y. Hiruma, H. Nagata, and T. Takenaka, Jpn. J. Appl. Phys., 45, 4493 (2006).   DOI
5 G. A. Smolensky, V. A. Isupov, A. I. Agranovskaya, and N. N. Krainik, Sov. Phys. Solid State, 2, 2651(1961).
6 T. Takenaka, K. Maruyama, and K. Sakata, Jpn. J. Appl. Phys., 30, 2236 (1991).   DOI
7 A. Sasaki, T. Chiba, Y. Mamiya, and E. Otsuki, Jpn. J. Appl. Phys., 38, 5564 (1999).   DOI
8 V. Dorect, G. Trolliard, and P. Boullay, Chem. Mater., 20, 5061 (2008).   DOI
9 W. Jo, R. Dittmer, M. Acosta, J. Zhang, C. Groh, E. Sapper, K. Wang, and J. Rodel, J. Electroceam., 29, 71 (2012).   DOI
10 G, Picht, J. Topfer, and E. Hennig, J. Eur. Ceram. Soc., 30, 3445 (2010).   DOI
11 M. Hinterstein, M. Knapp, M. Holzel, W. Jo, A. Cervellino, H. Ehrenberg, and H. Fuess, J. Appl. Crystallogr., 43, 1314 (2010).   DOI   ScienceOn
12 J. Kling, X. Tan, W. Jo, H. J. Kleebe, H. Fuess, and J. Rodel, J. Am. Ceram. Soc., 93, 2452 (2010).   DOI   ScienceOn
13 Y. S. Sung, J. M. Kim, J. H. Cho, T. K. Song, M. H. Kim, and T. G. Park, Appl. Phys. Lett., 98, 012902 (2011).   DOI   ScienceOn
14 Y. S. Sung, J. M. Kim, J. H. Cho, T. K. Song, M. H. Kim, H. H. Chong, T. G. Park, D. Do, and S. S. Kim, Appl. Phys. Lett., 96, 022901 (2010).   DOI   ScienceOn
15 A. Ullah, C. W. Ahn, A. Hussain, and I. W. Kim, Curr. Appl. Phys., 10, 1367 (2010).   DOI   ScienceOn
16 Q. Xu, D. P. Huang, M. Chen, W. Chen, H. X. Liu, and B. H. Kim, J. Alloys Compd., 471, 310 (2009).   DOI   ScienceOn
17 F. Ni, L. Luo, X. Pan, W. Li, and J. Zhu, J. Alloys Compd., 541, 150 (2012).   DOI
18 Y. Guo, M. Gu, and H. Luo, J. Am. Ceram. Soc., 94, 1350 (2011).   DOI
19 T. Takenaka and H. Nagata, J. Eur. Ceram. Soc., 25, 2693 (2005).   DOI   ScienceOn
20 J. E. Daniels, W. Jo, J. Rodel, and J. L. Jones, Appl. Phys. Lett., 95, 032904 (2009).   DOI
21 Y. Guo, M. Gu, H. Luo, Y. Liu, and R. L. Withers, Phys. Rev. B, 83, 054118 (2011).   DOI   ScienceOn