Kuan‐Ming Lee
Papers
2
Total Citations
83
H-Index
2
About
Kuan-Ming Lee is an emerging researcher at the forefront of self-powered sensing systems, robotics integration, and environmental monitoring technologies. His work centers on the innovative application of triboelectric nanosensors — devices that harvest mechanical energy to power their own detection capabilities — eliminating the need for external power sources in field deployments. Lee's most notable contribution, published in 2023 and already accumulating 68 citations, demonstrated the seamless integration of triboelectric nanosensors with robotic platforms for rapid, on-site detection of hazardous chemicals, directly addressing critical limitations in selectivity, sensitivity, and power dependency that have long hindered real-world sensing applications. Building on this foundation, his 2024 work advanced the paradigm further by coupling triboelectric nanosensors with autonomous thermoelectric generators and robotic hands, enabling fully self-powered, wireless heavy metal ion detection synchronized with Internet of Things infrastructure. This "touch and detect" approach represents a significant leap toward practical environmental monitoring and public health protection. Through his research, Lee is shaping the next generation of autonomous, energy-independent chemical sensing systems with broad implications for remote security, industrial safety, and ecological surveillance.
Research Focus
Key Achievements
Top Papers
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