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Tunable Buckled Beams with Mesoporous PVDF-TrFE/SWCNT Composite Filmfor Energy Harvesting

机译:具有中孔PVDF-TrFE / SWCNT复合膜的可调屈曲梁用于能量收集

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摘要

By incorporating mesoporous piezoelectric materials and tuning mechanical boundary conditions a simple beam structure can significantly take advantage of limited mechanical displacements for energy harvesting. Specifically, we employed a mesoporous PVDF-TrFE composite thin film mixed with single wall carbon nanotubes to improve the formation of the crystalline phase in this piezoelectric polymer. The film was then patterned on a thin buckled beam to form a compact energy harvester, which was used to study the effects of two boundary conditions, including the end rotation angle and the location of a mechanical stop along the beam. We carefully designed controlled experiments using mesoporous PVDF-TrFE film and PVDF-TrFE/SWCNT composite films, both of which were tested under two cases of boundary conditions, namely, the rotation of the end-angle and the addition of a mechanical stop. The voltage and current of the energy harvester under these two boundary conditions were respectively increased by approximately 160.1% and 200.5% compared to the results of its counterpart without imposing any boundary conditions. Thereby, our study offers a promising platform for efficiently powering implantable and wearable devices for harnessing energy from the human body which would otherwise have beenwasted.
机译:通过结合中孔压电材料和调整机械边界条件,简单的梁结构可以显着利用有限的机械位移进行能量收集。具体而言,我们采用了与单壁碳纳米管混合的介孔PVDF-TrFE复合薄膜来改善这种压电聚合物中晶相的形成。然后将薄膜在弯曲的细梁上构图以形成紧凑的能量收集器,该能量收集器用于研究两个边界条件的影响,包括端部旋转角度和沿梁的机械挡块的位置。我们使用中孔PVDF-TrFE膜和PVDF-TrFE / SWCNT复合膜精心设计了对照实验,这两种实验都是在两种边界条件下进行的,即端角的旋转和增加机械挡块。与在没有施加任何边界条件的情况下相比,这两个边界条件下的能量收集器的电压和电流分别增加了约160.1%和200.5%。因此,我们的研究提供了一个有前途的平台,可以有效地为可植入和可穿戴设备提供动力,以利用人体的能量。浪费了。

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