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正交钙钛矿型 ZnSnO 单晶纳米板的合成及其在能量收集中的应用。

Synthesis of Orthorhombic Perovskite-Type ZnSnO Single-Crystal Nanoplates and Their Application in Energy Harvesting.

机构信息

State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiaotong University , Shanghai 200240, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2017 Mar 8;9(9):8271-8279. doi: 10.1021/acsami.6b16629. Epub 2017 Feb 23.

Abstract

In recent years, lead-free piezoelectric nanogenerators have attracted much attention because of their great potential for harvesting energy from the environment. Here, we report the first synthesis of two-dimensional (2D) single-crystal ZnSnO hexagon nanoplates and the fabrication of ZnSnO nanoplate-based nanogenerators. The orthorhombic perovskite-structured ZnSnO nanoplates with (111) facets of the exposed plate surface are successfully synthesized via a one-step hydrothermal reaction. Piezoelectric nanogenerators are then fabricated using the as-synthesized single-crystal ZnSnO nanoplates and poly(dimethylsiloxane) (PDMS). A d value as high as 49 pC/N for the ZnSnO@PDMS composite was obtained without any electrical poling process, which demonstrates that the single-crystal ZnSnO nanoplates have a single-domain structure. To the best of our knowledge, this d value is also the highest among lead-free piezoelectric composites. A bending strain can induce the piezoelectric nanogenerator (PENG) to generate a large, stable, and sustainable output open circuit voltage of 20 V and a short circuit current of 0.6 μA, which are higher than many other PENGs. The output signals are sufficient to light a single light-emitting diode (LED), which shows the great potential of the material for scavenging mechanical energy from moving entities, such as road vehicles, railway vehicles, and humans.

摘要

近年来,无铅压电纳米发电机因其从环境中收集能量的巨大潜力而引起了广泛关注。在这里,我们报告了二维(2D)单晶 ZnSnO 六边形纳米板的首次合成以及基于 ZnSnO 纳米板的纳米发电机的制造。通过一步水热反应成功合成了具有暴露板面(111)面的正交钙钛矿结构的 ZnSnO 纳米板。然后使用合成的单晶 ZnSnO 纳米板和聚二甲基硅氧烷(PDMS)制造压电纳米发电机。在没有任何电极化过程的情况下,ZnSnO@PDMS 复合材料的 d 值高达 49 pC/N,这表明单晶 ZnSnO 纳米板具有单畴结构。据我们所知,这个 d 值也是无铅压电复合材料中的最高值。弯曲应变可以使压电纳米发电机(PENG)产生一个大的、稳定的和可持续的开路电压 20 V 和短路电流 0.6 μA,这比许多其他 PENG 都要高。输出信号足以点亮单个发光二极管(LED),这表明该材料从移动实体(如道路车辆、铁路车辆和人类)中收集机械能的潜力巨大。

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