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Dual-Structured Flexible Piezoelectric Film Energy Harvesters for Effectively Integrated Performance

机译:双结构柔性压电薄膜能量收割机,可有效集成性能

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摘要

Improvement of energy harvesting performance from flexible thin film-based energy harvesters is essential to accomplish future self-powered electronics and sensor systems. In particular, the integration of harvesting signals should be established as a single device configuration without complicated device connections or expensive methodologies. In this research, we study the dual-film structures of the flexible PZT film energy harvester experimentally and theoretically to propose an effective principle for integrating energy harvesting signals. Laser lift-off (LLO) processes are used for fabrication because this is known as the most efficient technology for flexible high-performance energy harvesters. We develop two different device structures using the multistep LLO: a stacked structure and a double-faced (bimorph) structure. Although both structures are well demonstrated without serious material degradation, the stacked structure is not efficient for energy harvesting due to the ineffectively applied strain to the piezoelectric film in bending. This phenomenon stems from differences in position of mechanical neutral planes, which is investigated by finite element analysis and calculation. Finally, effectively integrated performance is achieved by a bimorph dual-film-structured flexible energy harvester. Our study will foster the development of various structures in flexible energy harvesters towards self-powered sensor applications with high efficiency.
机译:的从挠性薄膜基能量采集能量收集性能的改善是必需完成未来的自供电电子元件和传感器系统。特别地,收获信号的一体化应被建立为无需复杂的设备的连接或昂贵的方法的单个设备的配置。在这项研究中,我们研究了灵活的PZT膜能源的双膜结构收割机实验和理论上提出整合能量采集信号的有效原则。激光剥离(LLO)工艺被用于制造,因为这是公知的作为最有效的技术,灵活的高性能能量采集。我们开发使用多步LLO两个不同的器件结构:堆叠结构和双面(双压电晶片)结构。尽管这两种结构。而没有严重的材料降解充分证明,堆叠结构是没有效率的能量收集由于无效地外加应变,在抗弯压电膜。这种现象从机械空档平面,其通过有限元分析计算研究了位置差造成的。最后,有效地整合性能由双压电晶片的双膜结构的柔性能量采集器来实现的。我们的研究将促进各种结构朝着高效率,自供电的传感器应用灵活的能量采集器的开发。

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