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Silicon Flash > Blog > Innovations > Self-powered real-time carbon dioxide monitoring system
Innovations

Self-powered real-time carbon dioxide monitoring system

Published June 30, 2025 By Juwan Chacko
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Self-powered real-time carbon dioxide monitoring system
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A novel self-sustaining wireless carbon dioxide (CO2) monitoring system has been developed by a dedicated research team. This groundbreaking technology harnesses tiny vibrational energy from its environment to periodically monitor CO2 levels.

The Innovation

Contents
The InnovationEmpowering Environmental Monitoring

A research team has developed a self-powered wireless carbon dioxide (CO2) monitoring system. This innovative system harvests minute vibrational energy from its surroundings to periodically measure CO2 concentrations.

Revolutionizing Environmental Monitoring

The research was published in Nano Energy.

This breakthrough addresses a critical need in environmental monitoring: accurately understanding “how much” CO2 is being emitted to combat climate change and global warming. While CO2 monitoring technology is key to this, existing systems largely rely on batteries or wired power, imposing limitations on installation and maintenance.

The KAIST team, led by Professor Kyeongha Kwon from the School of Electrical Engineering, in a joint study with Professor Hanjun Ryu’s team at Chung-Ang University, tackled this by creating a self-powered wireless system that operates without external power.

The core of this new system is an “Inertia-driven Triboelectric Nanogenerator (TENG)” that converts vibrations (with amplitudes ranging from 20–4,000 μm and frequencies from 0–300 Hz) generated by industrial equipment or pipelines into electricity. This enables periodic CO2 concentration measurements and wireless transmission without the need for batteries.

The research team successfully amplified minute vibrations and induced resonance by combining an elastic spring with a 4-stage stacked inertia-driven TENG. They achieved stable power production of 0.5 mW under conditions of 13 Hz and 0.56 g acceleration. The generated power was then used to operate a CO2 sensor and a low-power Bluetooth communication system.

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Empowering Environmental Monitoring

Professor Kyeongha Kwon emphasized, “For efficient environmental monitoring, a system that can operate continuously without power limitations is essential.”

He explained, “In this research, we implemented a self-powered system that can periodically measure and wirelessly transmit CO2 concentrations based on the energy generated from an inertia-driven TENG.” He added, “This technology can serve as a foundational technology for future self-powered environmental monitoring platforms integrating various sensors.”

Gyurim Jang, a master’s student at KAIST, and Daniel Manaye Tiruneh, a master’s student at Chung-Ang University, are the co-first authors of the paper.

Further Details

More information:
Daniel Manaye Tiruneh et al, Highly compact inertia-driven triboelectric nanogenerator for self-powered wireless CO2 monitoring via fine-vibration harvesting, Nano Energy (2025). DOI: 10.1016/j.nanoen.2025.110872

Provided by
The Korea Advanced Institute of Science and Technology (KAIST)




TAGGED: carbon, dioxide, monitoring, realtime, Selfpowered, System
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