Papers
2
Total Citations
13
H-Index
2
About
Guan‐Hua Dun is a rising leader at the frontier of optoelectronics and neuromorphic computing, pioneering next-generation devices that integrate sensing, memory, and computation. His central research thrusts include self-powered photodetectors, ferroelectric field-effect transistors, and broadband motion detection systems. Dun’s major contributions are exemplified by his work on a self-powered photodetector based on a perovskite/germanium heterojunction, which achieved high responsivity without an external power source—a critical step toward energy-efficient imaging and robotics. This highly cited paper (10 citations) showcases his ability to engineer novel material interfaces. More recently, he developed an InSe ferroelectric field-effect transistor that enables simultaneous perception, memory, and computation for all-in-one broadband motion detection, a breakthrough for artificial intelligence and autonomous systems. With his work accumulating growing citations and appearing in top venues, Dun is establishing himself as a transformative figure in the development of intelligent, low-power electronic systems that mimic biological functions, promising to reshape how machines interact with and interpret their environment.
Research Focus
Key Achievements
Top Papers
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- 2