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Lead-free piezoelectric ceramics based on (0.97 - X)K0.48Na 0.52NbO3-0.03Bi0.5(Na0.7K 0.2Li0.1)0.5ZrO3-xB 0.5Na0.5TiO3 ternary system

  • Xiaojing Cheng
  • , Jiagang Wu
  • , Xiaopeng Wang
  • , Binyu Zhang
  • , Jianguo Zhu
  • , Dingquan Xiao
  • , Xiangjian Wang
  • , Xiaojie Lou
  • , Wenfeng Liang
  • Sichuan University
  • Xi'an Jiaotong University
  • China Academy of Engineering Physics

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

In this work, the ternary system of potassium-sodium niobate has been designed to enhance the piezoelectric properties without sacrificing the Curie temperature greatly, and (0.97 - x)K0.48Na0.52NbO 3-0.03Bi0.5(Na0.7K0.2Li 0.1)0.5ZrO3-xB0.5Na 0.5TiO3 ceramics have been prepared by the conventional solid-state method. The effect of B0.5Na0.5TiO3 content on the microstructure and electrical properties of the ceramics is studied. The phase diagram shows a phase boundary of the rhombohedral-tetragonal (R-T) phase coexistence in the composition range of 0.5% < x < 1.5%, and then an enhanced dielectric, ferroelectric, and piezoelectric behavior is obtained at such a phase boundary zone. The ceramic with x = 0.01 has an optimum electrical behavior of d33 ∼ 285 pC/N, kp ∼ 0.40, εr ∼ 1235, tan δ ∼ 0.031, Pr ∼ 14.9 μC/cm2, and Ec ∼ 15.2 kV/cm, together with a high Curie temperature of ∼347 °C. The large d33 in such a ternary system is due to a composition-induced R-T phase transition and a higher εrPr, and the thermal stability performance is strongly dependent on the phase structure. As a result, the design of the ternary system is an effective way to enhance the piezoelectric properties of potassium-sodium niobate materials.

Original languageEnglish
Article number124107
JournalJournal of Applied Physics
Volume114
Issue number12
DOIs
StatePublished - 28 Sep 2013

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