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用于恶劣环境压电纳米发电机应用的极化和电极优化聚偏氟乙烯薄膜。

Polarization- and Electrode-Optimized Polyvinylidene Fluoride Films for Harsh Environmental Piezoelectric Nanogenerator Applications.

机构信息

Department of Physics, Inha University, Incheon, 22212, Republic of Korea.

Department of Physics and Energy Harvest-Storage Research Center, University of Ulsan, Ulsan, 44610, Republic of Korea.

出版信息

Small. 2021 Apr;17(14):e2007289. doi: 10.1002/smll.202007289. Epub 2021 Mar 11.

Abstract

While piezoelectric nanogenerators have demonstrated the effective conversion of tiny mechanical vibrations to electricity, their performances are rarely examined under harsh environmental conditions. Here, a multilayered polyvinylidene fluoride (PVDF) film-based piezoelectric nanogenerator (ML-PENG) is demonstrated to generate considerable and stable power outputs even at extremely low temperatures and pressures, and under strong UV. Up-/down-polarized PVDF films are alternately stacked, and Ag electrodes are intercalated between the two adjacent films. At -266 °C and 10  Torr, the ML-PENG generates an open-circuit voltage of 1.1 V, a short-circuit current density of 8 nA cm , and a power density of 4.4 nW cm . The piezoelectric outputs are quite stable against prolonged illumination of UV, large temperature- and pressure-variations, and excessive mechanical vibrations. The piezoelectric power density is greatly enhanced above the freezing and glass transition temperatures of PVDF and recorded to be 10, 105, and 282 nW cm at -73, 0, and 77 °C, respectively. The ML-PENG generates sufficient power to operate five light-emitting diodes by harvesting biomechanical energy under simulated Martian conditions. This work suggests that polarization- and electrode-optimized ML-PENG can serve as a reliable and economic power source in harsh and inaccessible environments like polar areas of Earth and extraterrestrial Mars.

摘要

虽然压电纳米发电机已经证明了可以有效地将微小的机械振动转换为电能,但它们的性能很少在恶劣的环境条件下进行测试。在这里,展示了一种基于多层聚偏二氟乙烯(PVDF)薄膜的压电纳米发电机(ML-PENG),即使在极低的温度和压力下,以及在强烈的紫外线下,它也能产生可观且稳定的功率输出。上下极化的 PVDF 薄膜交替堆叠,并且在两个相邻的薄膜之间插入 Ag 电极。在-266°C 和 10 托的条件下,ML-PENG 产生 1.1V 的开路电压、8nA/cm 的短路电流密度和 4.4nW/cm 的功率密度。压电输出在长时间的紫外光照射、大的温度和压力变化以及过度的机械振动下非常稳定。在 PVDF 的冻结和玻璃化转变温度以上,压电功率密度大大增强,在-73°C、0°C 和 77°C 时分别记录为 10、105 和 282nW/cm。ML-PENG 通过在模拟火星条件下收集生物力学能量,产生足够的电力来驱动五个发光二极管。这项工作表明,经过极化和电极优化的 ML-PENG 可以作为一种可靠且经济的电源,用于地球和外星火星等恶劣和难以到达的环境。

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