压电
相界
钛酸钡
极化(电化学)
陶瓷
铁电性
纳米尺度
化学
材料科学
电介质
纳米技术
铅(地质)
钛酸铅
工程物理
复合材料
相(物质)
光电子学
物理
地质学
物理化学
地貌学
有机化学
作者
Chunlin Zhao,Haijun Wu,Fei Li,Yongqing Cai,Yang Zhang,Dongsheng Song,Jiagang Wu,Xiang Lyu,Jie Yin,Dingquan Xiao,Jianguo Zhu,Stephen J. Pennycook
摘要
Due to growing environmental concerns on the toxicity of lead-based piezoelectric materials, lead-free alternatives are urgently required but so far have not been able to reach competitive performance. Here we employ a novel phase-boundary engineering strategy utilizing the multiphase convergence, which induces a broad structural flexibility in a wide phase-boundary zone with contiguous polymorphic phase transitions. We achieve an ultrahigh piezoelectric constant ( d33) of 700 ± 30 pC/N in BaTiO3-based ceramics, maintaining >600 pC/N over a wide composition range. Atomic resolution polarization mapping by Z-contrast imaging reveals the coexistence of three ferroelectric phases (T + O + R) at the nanoscale with nanoscale polarization rotation between them. Theoretical simulations confirm greatly reduced energy barriers facilitating polarization rotation. Our lead-free material exceeds the performance of the majority of lead-based systems (including the benchmark PZT-5H) in the temperature range of 10-40 °C, making it suitable as a lead-free replacement in practical applications. This work offers a new paradigm for designing lead-free functional materials with superior electromechanical properties.
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