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(Na0.8-xK0.2Lix)0.5Bi0.5Ti0.985Ta0.015O3 lead-free ceramics with large strain and high recoverable energy density

  • Han Wang
  • , Qiang Li
  • , Yuxin Jia
  • , Arun Kumar Yadav
  • , Benben Yan
  • , Mengyuan Li
  • , Qi Shen
  • , Qifeng Quan
  • , Weijia Wang
  • , Guangzhi Dong
  • , Huiqing Fan
  • Northwestern Polytechnical University Xian

科研成果: 期刊稿件文章同行评审

30 引用 (Scopus)

摘要

The conventional solid reaction was used to synthesize (Na0.8-xK0.2Lix)0.5Bi0.5Ti0.985Ta0.015O3 (abbreviated as BNKTT-100xLi) lead-free perovskite ceramics. The influences of Li+ ion doping for the relaxation mechanism and piezoelectric performances of all ceramics were systematically investigated. All ceramics exhibited a single perovskite structure, accompanied with a dense surface morphology and uniform element distributions. AC impedance spectroscopy showed the single grain conduction mechanism for all samples. The maximum bipolar strain (S = 0.462%) and unipolar strain (Su = 0.443%) for x = 0.025 sample were obtained under 80 kV/cm, and its unipolar strain achieved 0.573% at 100 °C. BNKTT-15Li ceramic exhibited outstanding energy storage performance with a recoverable energy density of 1.29 J/cm3 under applied 130 kV/cm field. It suggested that the excellent electro-strain and energy-storage properties for BNKTT-100xLi ceramics could be widely applicable to electronic equipment.

源语言英语
文章编号160378
期刊Journal of Alloys and Compounds
879
DOI
出版状态已出版 - 25 10月 2021

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