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Section C: Characterization of Ceramics

Preparation and Characterization of Mn-Doped (Ba0.85Ca0.15)(Zr0.1Ti0.9)O3 Ceramics

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Pages 105-113 | Received 02 Sep 2013, Accepted 18 Oct 2013, Published online: 02 May 2014

References

  • Y. Saito, H. Takao, T. Tani, T. Nonoyama, K. Takatori, T. Homma, T. Nagaya, and M. Nakamura, Lead-free piezoceramics. Nature. 432, 84–87 (2004).
  • M. Maerder, D. Damjanovic, and N. Setter, Lead Free Piezoelectric Materials. J Electroceram. 13, 385–392 (2004).
  • T. Takenaka, and H. Nagata, Current status and prospects of lead-free piezoelectric ceramics. J Eur Ceram Soc. 25, 2693–2700 (2005).
  • P.K. Panda, Review: environmental friendly lead-free piezoelectric materials. J Mater Sci. 44, 5049–5062 (2009).
  • Y.Q. Lu, and Y.X. Li, A review on lead-free piezoelectric ceramics studies in china. J Adv Dielectr. 1, 269–288 (2011).
  • S.O. Leontsev, and R.E. Eitel, Progress in engineering high strain lead-free piezoelectric ceramics. Sci Technol Adv Mater. 11, 044302-1-13 (2010).
  • W. Liu, and X. Ren, Large Piezoelectric Effect in Pb-Free Ceramics. Phys Rev Lett. 103, . 257602-1-4 (2009).
  • W. Li, Z. Xu, R. Chu, P. Fu, and G. Zang, You have full text access to this content Piezoelectric and Dielectric Properties of (Ba1−xCax)(Ti0.95Zr0.05)O3 Lead-Free Ceramics J Am Ceram Soc. 93, 2942–2944 (2010).
  • M. Porta, T. Lookman, and A. Saxena, Effects of criticality and disorder on piezoelectric properties of ferroelectrics. J Phys: Condens Matter. 22, . 345902-1-14 (2010).
  • W. Li, Z. Xu, R. Chu, P. Fu, and G. Zang, High piezoelectric d33 coefficient in (Ba1−xCax) (Ti0.98Zr0.02)O3 lead-free ceramics with relative high Curie temperature. Mater Lett. 64, 2325–2327 (2010).
  • W. Li, Z. Xu, R. Chu, P. Fu, and G. Zang, Polymorphic phase transition and piezoelectric properties of (Ba1−xCax)(Ti0.9Zr0.1)O3 lead-free ceramics. Physica B. 405, 4513–4516 (2010).
  • S.W. Zhang, H.L. Zhang, B.P. Zhang, and S. Yang, Phase-transition behavior and piezoelectric properties of lead-free (Ba0.95Ca0.05)(Ti1−xZrx)O3 ceramics. J Alloy Compd. 506, 131–135 (2010).
  • D. Damjanovic, A. Biancoli, L. Batooli, A. Vahabzadeh, and J. Trodahl, Elastic, dielectric, and piezoelectric anomalies and Raman spectroscopy of 0.5Ba(Ti0.8Zr0.2)O3-0.5(Ba0.7Ca0.3)TiO3. Appl Phys Lett. 100, . 192907-1-4 (2012).
  • P. Wang, X.Y. Li, and Y.Q. Lu, Enhanced piezoelectric properties of (Ba0.85Ca0.15) (Ti0.9Zr0.1)O3 lead-free ceramics by optimizing calcination and sintering temperature. J Eur Ceram Soc. 31, 2005–2012 (2011).
  • L.B. Kong, T.S. Zhang, J. Ma, and F. Boey, Progress in synthesis of ferroelectric ceramic materials via high-energy mechanochemical technique. Progress Mat Sci. 53, 207–322 (2008).
  • J.G. Wu, D.Q. Xiao, W.J. Wu, Q. Chen, J.G. Zhu, Z.C. Yang, and J. Wang, Role of room-temperature phase transition in the electrical properties of (Ba, Ca)(Ti, Zr)O3 ceramics. Scrip Mater. 65, 771–774 (2011).
  • Y.R. Cui, X.Y. Liu, M.H. Jiang, X.Y. Zhao, X. Shan, W.H. Li, C.L. Yuan, and C.R. Zhou, Lead-free (Ba0.85Ca0.15)(Ti0.9Zr0.1)O3–CeO2 ceramics with high piezoelectric coefficient obtained by low-temperature sintering. Ceram Int. 38, 4761–4764 (2012).
  • T. Rojac, M. Kosec, M. Połomska, B. Hilczer, P. Segedin, A. Bencan, Mechanochemical reaction in the K2CO3–Nb2O5 system. J Eur Ceram Soc. 29, 2999–3006 (2009).
  • W. Cai, C. Fu, J. Gao, and X. Deng, Effect of Mn doping on the dielectric properties of BaZr0.2Ti0.8O3 ceramics. J Mater Sci: Mater Electron. 21, 317–325 (2010).
  • L.X. He, and C.E. Li, Effects of addition of MnO on piezoelectric properties of lead zirconate titanate. J Mater Sci. 35, 2477–2480 (2000).

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