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Recent progress in piezoelectric nanogenerators as a sustainable power source in self-powered systems and active sensors

机译:压电纳米发电机作为自供电系统和有源传感器中的可持续电源的最新进展

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摘要

Mechanical energy sources are abundant in our living environment, such as body motion, vehicle transportation, engine vibrations and breezy wind, which have been underestimated in many cases. They could be converted into electrical energy and utilized for many purposes, including driving small electronic devices or even constructing an integrated system operated without bulky batteries and power cables. Many progresses have been made recently in the mechanical energy harvesting technology based on piezoelectric nanogenerators (PENGs). By introducing a new sandwich structure design, high performance PENGs can be achieved through very simple fabrication process with good mechanical stability by utilizing ZnO nanowires (NWs). By further optimizing the nanomaterials properties and device structure, the PENG's open circuit (OC) voltage can be elevated to over 37 V. Two important applications of this technology are that the nanogenerator can be used as a sustainable power source for self-powered system and can worked as active sensors. Several demonstrations are reviewed here. Finally, perspectives of this mechanical energy harvesting technology are discussed. Co-operation with power management circuit, capability of integrating with a system, and low cost large-scale manufacturing processing are suggested to be the key points toward commercialization of PENGs. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在我们的生活环境中,机械能源非常丰富,例如人体运动,车辆运输,发动机振动和微风,这在许多情况下都被低估了。它们可以被转换成电能并用于许多目的,包括驱动小型电子设备,甚至构建集成系统而无需笨重的电池和电缆。最近,基于压电纳米发电机(PENGs)的机械能收集技术取得了许多进展。通过引入新的夹心结构设计,可以通过非常简单的制造工艺利用ZnO纳米线(NW)来实现高性能PENG,并具有良好的机械稳定性。通过进一步优化纳米材料的性能和器件结构,可以将PENG的开路(OC)电压提高到37 V以上。该技术的两个重要应用是,纳米发电机可以用作自供电系统的可持续电源,并且可以用作主动传感器。这里回顾了一些示范。最后,讨论了这种机械能收集技术的观点。与电源管理电路的协作,与系统的集成能力以及低成本的大规模制造工艺被认为是PENGs商业化的关键点。 (C)2014 Elsevier Ltd.保留所有权利。

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