Ordered Matter Science Research Center, Nanchang University, Nanchang330031, People's Republic of China.
Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics, Southeast University, Nanjing211189, People's Republic of China.
J Am Chem Soc. 2023 Jan 25;145(3):1936-1944. doi: 10.1021/jacs.2c12306. Epub 2023 Jan 13.
Piezoelectric materials that enable electromechanical conversion have great application value in actuators, transducers, sensors, and energy harvesters. Large piezoelectric () and piezoelectric voltage () coefficients are highly desired and critical to their practical applications. However, obtaining a material with simultaneously large and has long been a huge challenge. Here, we reported a hybrid perovskite ferroelectric [MeNCHCl]CdBrCl to mitigate and roughly address this issue by heavy halogen substitution. The introduction of a large-size halide element softens the metal-halide bonds and reduces the polarization switching barrier, resulting in excellent piezoelectric response with a large (∼440 pC/N), which realizes a significant optimization compared with that of previously reported [MeNCHCl]CdCl (You et al. , , 306-309). More strikingly, [MeNCHCl]CdBrCl simultaneously shows a giant of 6215 × 10 V m/N, far exceeding those of polymers and conventional piezoelectric ceramics. Combined with simple solution preparation, easy processing of thin films, and a high Curie temperature of 373 K, these attributes make [MeNCHCl]CdBrCl promising for high-performance piezoelectric sensors in flexible, wearable, and biomechanical devices.
压电材料能够实现机电转换,在执行器、换能器、传感器和能量收集器中具有巨大的应用价值。大的压电()和压电电压()系数是非常需要的,对它们的实际应用至关重要。然而,获得同时具有大 和 的材料一直是一个巨大的挑战。在这里,我们报道了一种混合钙钛矿铁电体 [MeNCHCl]CdBrCl,通过重卤素取代来减轻和大致解决这个问题。大尺寸卤素元素的引入软化了金属卤化物键,降低了极化反转势垒,从而产生了优异的压电响应,具有较大的 (约 440 pC/N),与之前报道的 [MeNCHCl]CdCl 相比实现了显著的优化(You 等人,,306-309)。更引人注目的是,[MeNCHCl]CdBrCl 同时表现出巨大的 为 6215×10 V m/N,远远超过聚合物和传统压电陶瓷。结合简单的溶液制备、薄膜的易加工性以及 373 K 的高居里温度,这些特性使得 [MeNCHCl]CdBrCl 有望在柔性、可穿戴和生物力学设备中的高性能压电传感器中得到应用。