Miyong Lee
Papers
1
Total Citations
3
H-Index
1
About
Miyong Lee is a materials scientist whose research focuses on stretchable electronics, soft conductors, and robust wearable systems for extreme environments. Her most-cited work, "Highly stretchable conductor with elastomeric passivation sheath enabling applications in harsh conditions" (2024), introduces a novel design for conductive materials that maintain electrical performance under significant mechanical deformation while resisting moisture, chemicals, and temperature extremes. This contribution addresses a critical bottleneck in flexible electronics—durability in real-world conditions—by integrating a protective elastomeric sheath that preserves conductivity without sacrificing stretchability. Although early in its citation trajectory, the paper has already garnered attention for its practical implications in soft robotics, biomedical implants, and military-grade wearable sensors. Lee’s work exemplifies a materials-first approach to engineering resilient interfaces between electronics and dynamic biological or environmental systems. Her research is particularly notable for bridging the gap between laboratory-scale innovation and deployment in harsh settings, such as deep-sea or high-vibration industrial applications. By prioritizing both mechanical robustness and electrical reliability, Lee is shaping the next generation of conformable electronics that can withstand the rigors of daily use and extreme conditions alike.
Research Focus
Key Achievements
Top Papers
- 1