Literature DB >> 34014637

Aliovalent Doping Engineering for A- and B-Sites with Multiple Regulatory Mechanisms: A Strategy to Improve Energy Storage Properties of Sr0.7Bi0.2TiO3-Based Lead-Free Relaxor Ferroelectric Ceramics.

Peng Zhao1,2,3, Zixuan Fang1,2,4, Xingchen Zhang5, Jingjing Chen1,2, Yidi Shen6, Xing Zhang1,2, Qi An6, Chengtao Yang1,2, Xingsen Gao5, Shuren Zhang1,2, Bin Tang1,2.   

Abstract

Sr0.7Bi0.2TiO3 (SBT) is a promising pulse energy storage material due to minor hysteresis, but its low maximum polarization (Pmax) is bad for energy storage. K+-Bi3+ defect pairs were introduced into the A-site of SBT to obtain Sr0.35Bi0.35K0.25TiO3 (SBKT) with larger Pmax. Through first-principles calculations, we determined that the introduction of defect pairs destroys the paraelectric order phase and increases local polarization, resulting in more and larger polar nanoregion (PNR) formation. On this basis, doping NaNbO3 (NN) in A- and B-sites of SBKT increases the cationic disorder and ferroelectric destabilization, further destroying the long-range order structure and forming more PNRs with smaller sizes. This enhances relaxation and decreases remnant polarization, and the broadened dielectric peak enables 0.85SBKT-0.15NN to meet the X7R specification. Furthermore, the decreased grain size and oxygen vacancy, increased thermal conductivity, and weakened local electric field (simulated by COMSOL) increase the dielectric breakdown strength (BDS). As a result, 0.95SBKT-0.05NN exhibits a high energy storage density (W) of 2.45 J/cm3 with a high efficiency of 93.1%, a high pulsed discharge energy density of 2.1 J/cm3, and a high power density of 54.1 MW/cm3 at 220 kV/cm. The energy storage properties show excellent stability of temperature (-55 to 150 °C), frequency (10-500 Hz), and cycling (105 cycles). Notably, for the pulse charge-discharge properties, 0.95SBKT-0.05NN shows great fatigue resistance during 105 cycles under 25 and 150 °C, accompanied by excellent thermal stability. Moreover, the BDS and Pmax of 0.95SBKT-0.05NN sintered in O2 further enhance. A higher W of 2.92 J/cm3 with a high efficiency of 89% at 250 kV/cm is achieved. Therefore, 0.95SBKT-0.05NN shows great application potential for pulse energy storage. In this work, we provide a novel strategy and systematic in-depth study for improving the energy storage properties of SBT.

Entities:  

Keywords:  (Sr0.7Bi0.2)TiO3-based ceramics; energy storage; first-order reversal curve; first-principles calculation; numerical simulations; relaxor ferroelectrics

Year:  2021        PMID: 34014637     DOI: 10.1021/acsami.1c04274

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Discovery of electric devil's staircase in perovskite antiferroelectric.

Authors:  Zhenqin Li; Zhengqian Fu; Henghui Cai; Tengfei Hu; Ziyi Yu; Yue Luo; Linlin Zhang; Heliang Yao; Xuefeng Chen; Shujun Zhang; Genshui Wang; Xianlin Dong; Fangfang Xu
Journal:  Sci Adv       Date:  2022-04-06       Impact factor: 14.136

  1 in total

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