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Wind-Driven Bidirectional Fluttering Triboelectric Nanogenerator Via Dual Flagpole and Slot Structure Design

Authors
Son, J.-H.Heo, D.Goh, D.Lee, M.Chung, J.Choi, Seung TaeLee, Sangmin
Issue Date
Jan-2023
Publisher
John Wiley and Sons Inc
Keywords
bidirectional; fluttering; safety light; triboelectric nanogenerator; wind energy harvesting
Citation
Advanced Materials Technologies, v.8, no.1
Journal Title
Advanced Materials Technologies
Volume
8
Number
1
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/58856
DOI
10.1002/admt.202200453
ISSN
2365-709X
Abstract
Recently, as fossil fuel reserves have decreased and energy requirements have increased worldwide, wind energy, which has various advantages, such as ubiquitous, sustainable, clean, and infinite energy capacitance, has attracted increasing attention. In particular, wind-driven fluttering-type triboelectric nanogenerators (TENGs), which can utilize mechanical movement induced by wind energy based on the coupling of the triboelectric effect and electrostatic induction, have been widely studied. However, previous studies have not discussed structural device designs to harvest bidirectional wind energy. Herein, a wind-driven bidirectional fluttering triboelectric nanogenerator (WBF-TENG) is reported, which has a dual flagpole and slot structure design to generate electrical output against wind blowing from both directions. Considering natural wind flow in random direction, WBF-TENG is more effective compared with the previous unidirectional fluttering TENGs. The electrical output of the WBF-TENG is quantitatively measured and analyzed in terms of the peak and root mean square outputs depending on various design parameters and wind velocities. The findings demonstrated that the WBF-TENG can be utilized as a swing safety light by continuously turning on 76 LEDs when riding a swing during right and left direction movements. Furthermore, the WBF-TENG can scavenge omnidirectional wind energy by vertically stacking two devices. © 2022 Wiley-VCH GmbH.
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