铁电性
压电
钙钛矿(结构)
陶瓷
化学
材料科学
凝聚态物理
压电系数
光电子学
电压
复合材料
电介质
电气工程
结晶学
有机化学
物理
工程类
作者
Xiao‐Gang Chen,Xian‐Jiang Song,Zhi‐Xu Zhang,Peng‐Fei Li,Jia‐Zhen Ge,Yuan‐Yuan Tang,Ji‐Xing Gao,Wan‐Ying Zhang,Da‐Wei Fu,Yu‐Meng You,Ren‐Gen Xiong
摘要
Piezoelectric sensors that can work under various conditions with superior performance are highly desirable with the arrival of the Internet of Things. For practical applications, a large piezoelectric voltage coefficient g and a high Curie temperature Tc are critical to the performance of piezoelectric sensors. Here, we report a two-dimensional perovskite ferroelectric (4-aminotetrahydropyran)2PbBr4 [(ATHP)2PbBr4] with a saturated polarization of 5.6 μC cm–2, high Tc of 503 K [above that of BaTiO3 (BTO, 393 K)], and extremely large g33 of 660.3 × 10–3 V m N–1 [much beyond that of Pb(Zr,Ti)O3 (PZT) ceramics (20 to 40 × 10–3 V m N–1), more than 2 times higher than that of poly(vinylidene fluoride) (PVDF, about 286.7 × 10–3 V m N–1)]. Combined with the advantages of molecular ferroelectrics, such as light weight, easy and environmentally friendly processing, and mechanical flexibility, (ATHP)2PbBr4 would be a competitive candidate for next-generation smart piezoelectric sensors in flexible devices, soft robotics, and biomedical devices.
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