极化
压电响应力显微镜
压电
居里温度
铁电性
钙钛矿(结构)
化学
陶瓷
铅(地质)
矿物学
复合材料
凝聚态物理
结晶学
光电子学
材料科学
电介质
铁磁性
地貌学
物理
有机化学
地质学
作者
Mao‐Hua Zhang,Ke Wang,Yijia Du,Gang Dai,Wei Sun,Geng Li,Duan Hu,Hao‐Cheng Thong,Chunlin Zhao,Xiaoqing Xi,Zhenxing Yue,Jing‐Feng Li
摘要
With growing concern over world environmental problems and increasing legislative restriction on using lead and lead-containing materials, a feasible replacement for lead-based piezoceramics is desperately needed. Herein, we report a large piezoelectric strain ( d 33 *) of 470 pm/V and a high Curie temperature ( T c ) of 243 °C in (Na 0.5 K 0.5 )NbO 3 -(Bi 0.5 Li 0.5 )TiO 3 -BaZrO 3 lead-free ceramics by doping MnO 2 . Moreover, excellent temperature stability is also observed from room temperature to 170 °C (430 pm/V at 100 °C and 370 pm/V at 170 °C). Thermally stimulated depolarization currents (TSDC) analysis reveals the reduced defects and improved ferroelectricity in MnO 2 -doped piezoceramics from a macroscopic view. Local poling experiments and local switching spectroscopy piezoresponse force microscopy (SS-PFM) demonstrates the enhanced ferroelectricity and domain mobility from a microscopic view. Distinct grain growth and improvement in phase angle may also account for the enhancement of piezoelectric properties.
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