Hanzhi Xun
Papers
1
Total Citations
23
H-Index
1
About
Hanzhi Xun is pioneering the future of human–machine interaction through innovations in flexible electronics and intelligent tactile perception. Their core research focuses on field-effect transistor (FET)-based tactile sensors, where they leverage the unique signal amplification and controllable carrier transport of FETs to create high-performance artificial sensing systems. Xun’s most influential work, “Intelligent Tactile Perception Revolution: Innovations in Flexible FET‐Based Tactile Sensors for Next‐Gen Human–Machine Interfaces” (2026), has already garnered 23 citations, signaling its rapid impact on the field. This paper lays the groundwork for next-generation interfaces that mimic human touch with unprecedented sensitivity and flexibility. By integrating advanced materials with FET architectures, Xun is enabling soft, wearable sensors capable of real-time pressure and texture detection—critical for robotics, prosthetics, and smart healthcare. Their contributions bridge fundamental device physics with practical applications, offering a scalable path toward truly immersive and responsive human–machine systems. For students and researchers exploring the frontiers of flexible electronics, Xun’s work exemplifies how intelligent tactile perception can revolutionize how we interact with technology.
Research Focus
Key Achievements
Top Papers
- 1