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  4. Triboelectric horology: escapement-inspired design strategy for prolonged energy harvesting under irregular mechanical inputs
 
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Triboelectric horology: escapement-inspired design strategy for prolonged energy harvesting under irregular mechanical inputs

Journal
Microsystems and Nanoengineering
Journal Volume
12
Journal Issue
1
Start Page
131
ISSN
20557434
Date Issued
2026-12
Author(s)
Lee, Donghan
Ju, Sanghu
Park, Dong Yong
Kwon, Seokhoon
Jeong, Yong Woo
Choi, Minsik
Lee, Sangjun
Kim, Yu-seop
Cho, Sumin
Kam, Dongik
ZONG-HONG LIN  
Choi, Dongwhi
DOI
10.1038/s41378-026-01259-4
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-105036101605&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/738175
Abstract
The intermittent nature of ambient mechanical energy sources such as wind, vibration, and human motion poses a significant challenge for the stable operation of triboelectric nanogenerators (TENGs). To address this issue, this study presents a long-lasting operable triboelectric nanogenerator (LONG), a novel TENG system that utilizes an escapement-based mechanical regulation strategy to convert irregular and low-frequency mechanical inputs into stable and continuous electrical outputs. LONG integrates a rotational TENG system and an escapement mechanism to achieve a controlled and unidirectional rotational motion, thereby prolonging the energy-harvesting duration while minimizing the energy losses due to torque fluctuation. A freestanding-mode TENG, enhanced with electret materials fabricated via corona discharge are adopted to ensure efficient charge induction under low-torque conditions. Parametric studies reveal that key design variables, including spring tension, gear ratio, electret surface potential, and applied mass, significantly influence the output stability and voltage amplitude. The optimized LONG system demonstrated a peak voltage of 300 V, a current of 19 μA, and continuous operation exceeding 3 min from a single winding. Furthermore, its ability to power 125 LEDs, a thermo-hygrometer, and a dust collecting system validates its practical applicability in self-powered systems. Thus, this study introduces a robust design framework for mechanical regulation in TENGs, offering a new pathway for stable energy harvesting from irregular mechanical sources for wearable, environmental, and infrastructure-monitoring applications. (Figure presented.)
Publisher
Springer Nature
Type
journal article

臺大位居世界頂尖大學之列,為永久珍藏及向國際展現本校豐碩的研究成果及學術能量,圖書館整合機構典藏(NTUR)與學術庫(AH)不同功能平台,成為臺大學術典藏NTU scholars。期能整合研究能量、促進交流合作、保存學術產出、推廣研究成果。

To permanently archive and promote researcher profiles and scholarly works, Library integrates the services of “NTU Repository” with “Academic Hub” to form NTU Scholars.

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開放取用是從使用者角度提升資訊取用性的社會運動,應用在學術研究上是透過將研究著作公開供使用者自由取閱,以促進學術傳播及因應期刊訂購費用逐年攀升。同時可加速研究發展、提升研究影響力,NTU Scholars即為本校的開放取用典藏(OA Archive)平台。(點選深入了解OA)

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