4.7 Article

Large strain with enhanced energy-storage and temperature stable dielectric properties in Bi0.38Na0.38Sr0.24Ti(1-x)(Mn1/3Nb2/3)xO3 ceramics

期刊

CERAMICS INTERNATIONAL
卷 47, 期 1, 页码 1325-1332

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2020.08.254

关键词

Lead-free ceramic; Strain; Energy storage; Relaxor ferroelectric; High-temperature dielectric

资金

  1. National Natural Science Foundation [51672220, 51902258]
  2. Fundamental Research Funds for the Central Universities of NPU [3102019GHXM002]
  3. SKLSP Project of China [2019-TZ-04]
  4. China Postdoctoral Science Foundation [2019M653729]
  5. Natural Science Foundation of Shaanxi Province [2019JQ-621]

向作者/读者索取更多资源

A series of novel lead-free ceramics (BNST-100xMN) were designed and fabricated, and their properties were systematically investigated. The substitution by MN dopant resulted in a more homogeneous microstructure, leading to improved breakdown strength and energy storage density.
A series of novel Bi0.38Na0.38Sr0.24Ti(1-x)(Mn1/3Nb2/3)(x)O-3 lead-free ceramics (BNST-100xMN) were designed and fabricated. The dielectric, ferroelectric, energy-storage, electrostrain properties, and impedance performance of these materials were systematically investigated. A large strain response under low driving electric field was obtained that benefits from the enhanced relaxor-to-ferroelectric phase transition. The optimum piezoelectric stain coefficient d(33)* of 930 pm/V (under 40 kV/cm) was achieved in BNST-1MN composition. The substitution by MN dopant gave rise to a homogeneous micro-morphology with small grains that gave rise to an enhanced high breakdown strength (BDS). Slim and slanted ferroelectric hysteresis was obtained by introducing a larger amount of MN, and hence the BNST-2MN ceramic exhibits a high energy-storage density of 1.30 J/cm(3) at 110 kV/cm, accompanied with an excellent fatigue-free behavior. The dielectric response exhibited a stable high temperature dielectric property with low dielectric loss. These results indicate that BNST-100xMN ceramics are promising candidates for the actuator and energy storage applications.

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