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Recent advances in flexible PVDF based piezoelectric polymer devices for energy harvesting applications

机译:基于柔性PVDF的压电聚合物装置的最新进展,用于能量收集应用

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Energy harvesting is one of the most promising research areas to produce sustainable power sources from the ambient environment. Which found applications to attain the extensive lifetime self-powered operations of various devices such as MEMS wireless sensors, medical implants and wearable electronic devices. Piezoelectric nanogenerators can efficiently convert the vastly available mechanical energy into electrical energy to meet the requirements of low-powered electronic devices. Among the piezoelectric materials, poly (vinylidene fluoride) (PVDF) and its copolymers are extensively studied for the development of energy harvesting devices. Due to the outstanding properties such as high flexibility, ease of processing, long-term stability, biocompatibility makes them a promising candidate for piezoelectric generators. Nevertheless, compared to piezoceramic materials, PVDF based generators produce lower piezoresponse. Over the last decades, tremendous research activities have been reported to endorse the performance of PVDF based energy harvesters. This review article mainly focused on the recent progress in the performance improvement with processing methods, piezoelectric materials, different filler loading. The new developments and design structures will lead to an increase in piezoelectricity, alignment of dipoles, dielectric properties and subsequently enhance the output performance of the device. Electronic circuits play a vital role in energy harvesting to efficiently collect the developed charge from the device. Here, we have proposed a detailed description of the electronic circuits. Also, in the application part deals with the recent progress in flexible, biomedical and hybrid generators based on PVDF polymers.
机译:能量收集是从环境环境中生产可持续电源的最有前途的研究领域之一。其中发现应用以获得各种设备的广泛寿命的自动操作,例如MEMS无线传感器,医疗植入物和可穿戴电子设备。压电纳米能器可以有效地将广大的机械能转换为电能,以满足低功耗电子设备的要求。之间的压电材料,聚(偏二氟乙烯)(PVDF)和其共聚物广泛的研究能量收集装置的发展。由于卓越的性能,如高灵活性,易于加工,长期稳定性,生物相容性使得它们成为压电发电机的有希望的候选者。然而,与压电织材料相比,PVDF的发电机产生较低的压电响应。在过去的几十年中,据报道,据报道了巨大的研究活动来支持基于PVDF的能量收割机的表现。本篇综述文章主要专注于近期性能改进的进展,加工方法,压电材料,不同的填料加载。新的开发和设计结构将导致压电,偶极级,介电性能的对准,并随后提高器件的输出性能。电子电路在能量收集中起着至关重要的作用,以有效地从装置中收集发达的电荷。这里,我们提出了对电子电路的详细描述。此外,在申请部分中,涉及基于PVDF聚合物的柔性,生物医学和混合发电机的最新进展。

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