Chi Hwan Lee
Papers
5
Total Citations
63
H-Index
5
About
Chi Hwan Lee is a leading researcher in the development of soft, sustainable, and high-performance materials for wearable biosensors and flexible electronics. His work focuses on overcoming fundamental challenges in material toughness, environmental resilience, and device stretchability. A key contribution is the design of spider silk-inspired conductive hydrogels, which achieve enhanced toughness through dense hierarchical structuring—a breakthrough for applications in soft robotics and implantable electronics (23 citations). Lee also pioneers plant-based substrate materials for flexible green electronics, addressing the critical issue of non-degradable electronic waste (19 citations). His innovative spongy Ag foam strain gauges offer exceptional stretchability and linearity, solving persistent issues like mechanical hysteresis in wearable sensors (8 citations). Additionally, his comprehensive review on advanced materials and assembly strategies for wearable biosensors has guided the field toward next-generation health monitoring and human-robot interaction systems (8 citations). Lee’s systematic investigation of microelectrode geometry and surface finish further optimizes enzymatic biosensor performance. With a portfolio of highly cited, interdisciplinary work, Lee is shaping the future of eco-friendly, durable, and wearable bioelectronics.
Research Focus
Key Achievements
Top Papers
- 1
- 2Plant‐Based Substrate Materials for Flexible Green Electronics19 citations · 2022
- 3Spongy Ag Foam for Soft and Stretchable Strain Gauges8 citations · 2024
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- 5