Song Hyun-Cheol, Kim Sun-Woo, Kim Hyun Soo, Lee Dong-Gyu, Kang Chong-Yun, Nahm Sahn
Center for Electronic Materials, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.
Department of Materials Science and Engineering, Korea University, Seoul, 02841, Republic of Korea.
Adv Mater. 2020 Dec;32(51):e2002208. doi: 10.1002/adma.202002208. Epub 2020 Oct 1.
Piezoelectric energy harvesters (PEHs) aim to generate sufficient power to operate targeting device from the limited ambient energy. PEH includes mechanical-to-mechanical, mechanical-to-electrical, and electrical-to-electrical energy conversions, which are related to PEH structures, materials, and circuits, respectively; these should be efficient for increasing the total power. This critical review focuses on PEH structures and materials associated with the two major energy conversions to improve PEH performance. First, the resonance tuning mechanisms for PEH structures maintaining continuous resonance, regardless of a change in the vibration frequency, are presented. Based on the manual tuning technique, the electrically- and mechanically-driven self-resonance tuning (SRT) techniques are introduced in detail. The representative SRT harvesters are summarized in terms of tunability, power consumption, and net power. Second, the figure-of-merits of the piezoelectric materials for output power are summarized based on the operating conditions, and optimal piezoelectric materials are suggested. Piezoelectric materials with large k , d , and g values are suitable for most PEHs, whereas those with large k and Q values should be used for on-resonance conditions, wherein the mechanical energy is directly supplied to the piezoelectric material. This comprehensive review provides insights for designing efficient structures and selection of proper piezoelectric materials for PEHs.
压电能量采集器(PEH)旨在从有限的环境能量中产生足够的电力来驱动目标设备。PEH包括机械到机械、机械到电气以及电气到电气的能量转换,它们分别与PEH的结构、材料和电路相关;这些转换对于提高总功率应该是高效的。这篇综述聚焦于与两种主要能量转换相关的PEH结构和材料,以提高PEH的性能。首先,介绍了PEH结构的共振调谐机制,该机制可使结构无论振动频率如何变化都能保持连续共振。基于手动调谐技术,详细介绍了电驱动和机械驱动的自共振调谐(SRT)技术。从可调性、功耗和净功率方面总结了代表性的SRT采集器。其次,根据工作条件总结了用于输出功率的压电材料的品质因数,并提出了最佳压电材料。具有大的k、d和g值的压电材料适用于大多数PEH,而具有大的k和Q值的压电材料应在共振条件下使用,此时机械能直接供应给压电材料。这篇全面的综述为设计高效的PEH结构和选择合适的压电材料提供了见解。