Yujeong Lee
Papers
1
Total Citations
4
H-Index
1
About
Yujeong Lee is a leading materials scientist whose research focuses on high-performance ferroelectric polymers for soft robotics and flexible electronics. Her most cited work, "High-temperature electromechanical actuation of relaxor ferroelectric polymers blended with normal ferroelectric polymer" (2023, 4 citations), addresses a critical bottleneck in the field: the thermal instability of polymer-based actuators. By blending relaxor and normal ferroelectric polymers, Lee demonstrated that soft actuators can maintain robust electromechanical performance at temperatures exceeding 60°C—a regime where conventional flexible actuators typically fail. This breakthrough opens new possibilities for deploying soft actuators in demanding environments such as microfluidics, automotive systems, aircraft components, and bioelectronics. Lee's contributions are pivotal for advancing the reliability and application range of soft robotics, particularly in high-temperature industrial and biomedical settings. Her work has quickly garnered attention, establishing her as an emerging authority in the design of thermally resilient ferroelectric materials. With a growing citation record and a focus on solving real-world thermal challenges, Lee is shaping the future of adaptive, high-temperature soft actuation technologies.
Research Focus
Key Achievements
Top Papers
- 1