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Highly compact inertia-driven triboelectric nanogenerator for self-powered wireless CO2 monitoring via fine-vibration harvesting
- Tiruneh, Daniel Manaye;
- Jang, Gyurim;
- Kwon, Kyeongha;
- Ryu, Hanjun
WEB OF SCIENCE
11SCOPUS
11초록
Effective CO2 monitoring is essential for environmental, social, and corporate governance. The European Union has also begun to regulate CO2 emissions from factories to ensure a sustainable future. Among CO2 measurement systems, indoor, self-powered, wireless CO2 monitoring platforms that harvest environmental mechanical energy offer a promising solution. These systems can be seamlessly integrated into existing infrastructure, facilitating sustainable, real-time monitoring and management. The work presented here shows that inertia-driven triboelectric nanogenerators (TENGs) offer a real-time, battery-free solution to monitor CO2 levels in buildings using fine vibrations that can occur in pipelines. A resonant vibration structure with multi-stacked TENGs enhances fine vibration and enables a highly compact energy harvester. Surface-treated and multi-arrayed TENGs generate root-mean-square power of 0.5 mW at a vibration frequency of 13 Hz. By incorporating a Bluetooth Low Energy (BLE) system-on-a-chip (SoC) for energy-efficient data transmission, the system periodically monitors CO2 concentrations, ensuring TENG-driven operation and mitigating environmental and health risks. These findings contribute to global sustainability goals by providing a scalable solution for environmental monitoring challenges.
키워드
- 제목
- Highly compact inertia-driven triboelectric nanogenerator for self-powered wireless CO2 monitoring via fine-vibration harvesting
- 저자
- Tiruneh, Daniel Manaye; Jang, Gyurim; Kwon, Kyeongha; Ryu, Hanjun
- 발행일
- 2025-06
- 유형
- Article
- 저널명
- Nano Energy
- 권
- 138