Papers

4

Total Citations

75

H-Index

4

About

Shuo Ke is a pioneering researcher in neuromorphic devices and bio-inspired electronics, with a focus on developing artificial sensory systems that emulate human neural functions. Their work centers on photoelectric neuromorphic transistors, self-powered multisensory systems, and triboelectric nanogenerators, aiming to bridge the gap between biological perception and artificial intelligence. Ke’s major contributions include the creation of indium-gallium-zinc-oxide based transistors that simulate photoexcited corneal nociceptors, enabling pain signal transmission for early-warning systems—a breakthrough with 48 citations. They also developed flexible neuromorphic transistors for computing and perception, and an artificial fear neural circuit integrating noise triboelectric nanogenerators, achieving 10 citations for its potential in humanoid cognition. Notably, Ke’s 2025 work on a self-powered multisensory device inspired by the inner ear’s labyrinth integrates auditory and rotational perception, showcasing their ability to merge biological principles with engineering. With over 75 citations across key papers, Ke’s research advances neuromorphic computing, offering scalable solutions for intelligent robotics and neural prosthetics. Their innovative approach positions them as a rising leader in bio-inspired electronics, driving progress toward truly autonomous systems.

Research Focus

Key Achievements

4
H-Index
4
Papers
75
Total Citations
19
Avg Citations/Paper
🏆 Most Cited Paper
Indium‐Gallium‐Zinc‐Oxide Based Photoelectric Neuromorphic Transistors for Modulable Photoexcited Corneal Nociceptor Emulation
48 citations · 2021
📈 Most Prolific Year: 2021 (1 Papers)
🤝 Key Collaborators: 20
🏛 Institutions: Collaborative Innovation Center of Advanced Microstructures, Shanghai Zhangjiang Laboratory

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago