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Strategies for enhancing low-frequency performances of triboelectric, electrochemical, piezoelectric, and dielectric elastomer energy harvesting: recent progress and challenges.

Authors :
Xiahou, Xingzi
Wu, Sijia
Guo, Xin
Li, Huajian
Chen, Chen
Xu, Ming
Source :
Science Bulletin. Aug2023, Vol. 68 Issue 15, p1687-1714. 28p.
Publication Year :
2023

Abstract

[Display omitted] Mechanical energy harvesting transforms various forms of mechanical energy, including ocean waves, wind, and human motions, into electrical energy, providing a viable solution to address the depletion of fossil fuels and environmental problems. However, one major obstacle for the direct conversion of mechanical energy into electricity is the low frequency of the majority of mechanical energy sources (≤5 Hz), resulting in low energy conversion efficiency, output power and output current. Over recent years, a numerous innovative technologies have been reported to enable improved energy harvesting utilizing various mechanisms. This review aims to present an in-depth analysis of the research progress in low-frequency energy harvesting technologies that rely on triboelectric, electrochemical, piezoelectric, and dielectric elastomer effects. The discussion commences with an overview of the difficulties associated with low-frequency energy harvesting. The critical aspects that impact the low-frequency performance of mechanical energy harvesters, including working mechanisms, environmental factors, and device compositions, are elucidated, while the advantages and disadvantages of different mechanisms in low-frequency operation are compared and summarized. Moreover, this review expounds on the strategies that can improve the low-frequency energy harvesting performance through the modulations of material compositions, structures, and devices. It also showcases the applications of mechanical energy harvesters in energy harvesting via waves, wind, and human motions. Finally, the recommended choices of mechanical energy harvesters with different mechanisms for various applications are offered, which can assist in the design and fabrication process. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20959273
Volume :
68
Issue :
15
Database :
Academic Search Index
Journal :
Science Bulletin
Publication Type :
Academic Journal
Accession number :
169951053
Full Text :
https://doi.org/10.1016/j.scib.2023.06.025