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
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초록

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

Triboelectric nanogeneratorInertiaSelf-powered sensorPipe vibrationEnvironmental monitoringENERGYFORCE
제목
Highly compact inertia-driven triboelectric nanogenerator for self-powered wireless CO2 monitoring via fine-vibration harvesting
저자
Tiruneh, Daniel ManayeJang, GyurimKwon, KyeonghaRyu, Hanjun
DOI
10.1016/j.nanoen.2025.110872
발행일
2025-06
유형
Article
저널명
Nano Energy
138