Papers
3
Total Citations
324
H-Index
3
About
Min Su is a leading researcher in the field of flexible and wearable electronics, with a primary focus on the development of high-performance pressure sensors for healthcare, robotics, and human-machine interaction. Her major contributions center on engineering novel microstructures and material architectures to overcome the longstanding trade-off between sensor sensitivity, cost, and wearability. Su pioneered the use of controllable graphene wrinkles to create highly sensitive, low-cost flexible pressure sensors, a breakthrough work that has garnered 197 citations and set a new benchmark for microstructure design. She has also been instrumental in advancing textile-based sensors, authoring a highly cited review (83 citations) that has shaped the field’s understanding of capacitive pressure sensors in electronic textiles. Her recent work on all-fabric capacitive sensors integrating piezoelectric nanofibers (44 citations) further demonstrates her ability to merge comfort with cutting-edge performance, enabling applications from physiological monitoring to robotic sensing. Through these innovations, Su has established herself as a key figure in the push toward practical, scalable wearable electronics.
Research Focus
Key Achievements
Top Papers
- 1Controllable Graphene Wrinkle for a High-Performance Flexible Pressure Sensor197 citations · 2021
- 2Textile-Based Flexible Capacitive Pressure Sensors: A Review83 citations · 2022
- 3