Yongli Gao
Papers
2
Total Citations
281
H-Index
2
About
Yongli Gao is a leading researcher in the field of bio-inspired electronics and neuromorphic devices, with a focus on developing artificial sensory systems that emulate human biological functions. His major contributions include the creation of a sub-10 nm vertical organic/inorganic hybrid transistor for pain-perceptual and sensitization-regulated nociceptor emulation (186 citations), which represents a breakthrough in mimicking the human body's ability to recognize harmful stimuli and regulate pain responses. Additionally, Gao developed optoelectronic In-Ga-Zn-O memtransistors for artificial vision systems (95 citations), demonstrating how naturally oxidized Al₂O₃ and ion gel dielectrics can simulate the visual functions of human eyes. His work bridges the gap between materials science and neural computing, enabling next-generation bio-robotics and intelligent sensory systems. Gao's research has been widely recognized for its potential to revolutionize prosthetics, human-machine interfaces, and neuromorphic computing, with his highly cited papers reflecting significant impact in the field of organic/inorganic hybrid electronics and artificial perception systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Optoelectronic In‐Ga‐Zn‐O Memtransistors for Artificial Vision System95 citations · 2020