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纳米发电机的功率输出:BaTiO3 粒径和结晶度的影响。

Nanogenerator power output: influence of particle size and crystallinity of BaTiO.

机构信息

Particle Technology Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, Sonneggstrasse 3, CH-8092 Zurich, Switzerland.

出版信息

Nanotechnology. 2017 Jul 7;28(27):275705. doi: 10.1088/1361-6528/aa75b7.

Abstract

Lead-free piezoelectric nanogenerators made with BaTiO offer an attractive energy harvesting solution towards portable, battery-free medical devices such as self-powered pacemakers. Here, we assembled nanogenerators made of thin, flexible poly(vinylidene fluoride-co-hexafluoropropylene) films containing either polycrystalline BaTiO nanoparticles of various sizes or commercial monocrystalline particles of 64 or 278 nm in average diameter. The nanoparticles were prepared by hydrogen-driven flame aerosol technology and had an average diameter of 24-50 nm with an average crystal size of about 10 nm. The rapid cooling during nanoparticle formation facilitated the synthesis of polycrystalline, multi-domain, piezoelectrically active tetragonal BaTiO with a high c/a lattice ratio. Using these particles, 2 μm thin polymer nanocomposites were formed, assembled into nanogenerators that exhibited a 1.4 V time-averaged output, almost twice that of the best commercial BaTiO particles. That output was maintained stable for over 45 000 cycles with each cycle corresponding to a heartbeat of 60 bpm. The exceptional piezoelectric performance of these nanogenerators is traced to their constituent polycrystalline nanoparticles, having high degree of domain orientation upon poling and exhibiting the flexoelectric effect, polarization induced by a strain gradient.

摘要

无铅压电纳米发电机由 BaTiO 制成,为自供电起搏器等便携式、无电池医疗设备提供了有吸引力的能量收集解决方案。在这里,我们组装了由含有不同尺寸多晶 BaTiO 纳米颗粒或平均直径为 64 或 278nm 的商用单晶颗粒的薄而灵活的聚偏二氟乙烯-共-六氟丙烯薄膜制成的纳米发电机。纳米颗粒通过氢驱动火焰气溶胶技术制备,平均直径为 24-50nm,平均晶体尺寸约为 10nm。纳米颗粒形成过程中的快速冷却促进了多晶、多畴、压电活性四方相 BaTiO 的合成,具有高 c/a 晶格比。使用这些颗粒,形成了 2μm 厚的聚合物纳米复合材料,组装成纳米发电机,其平均输出电压为 1.4V,几乎是最佳商用 BaTiO 颗粒的两倍。在超过 45000 次循环中,每个循环对应 60 bpm 的心跳,该输出保持稳定。这些纳米发电机的卓越压电性能可归因于其组成的多晶纳米颗粒,在极化时具有高度的畴取向,并表现出由应变梯度引起的挠曲电效应、极化。

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