Mingqi Pan
Papers
1
Total Citations
6
H-Index
1
About
Mingqi Pan is a leading innovator in flexible electronics and tactile sensing, whose work is reshaping the design of high-performance wearable devices. His research centers on bioinspired sensor architectures and advanced structural engineering for three-dimensional force (3D-force) detection. Pan’s most notable contribution is the development of a river valley-inspired, capacitive 3D-force tactile sensor featuring a U-shaped groove structure, which achieves exceptional sensitivity and rapid response—capable of distinguishing normal and tangential forces in real time. This breakthrough, published in 2024 and already garnering 6 citations, addresses a critical bottleneck in smart electronics and human-machine interfaces. By mimicking natural topographies, Pan’s design enables unprecedented precision in force discrimination, with potential applications ranging from prosthetics to soft robotics. His work stands out for its elegant fusion of biomimicry and microengineering, offering a scalable path toward next-generation tactile systems that are both fast and reliable. As a rising figure in the field, Mingqi Pan continues to push the boundaries of sensor performance, making him a researcher to watch for anyone interested in the future of intelligent, touch-responsive technology.
Research Focus
Key Achievements
Top Papers
- 1