Jun He
Papers
3
Total Citations
427
H-Index
3
About
Jun He is a pioneering researcher at the intersection of neuromorphic electronics, two-dimensional materials, and bio-inspired device engineering. His work focuses on developing advanced transistors that mimic biological sensory systems, with particular emphasis on artificial nociception and neuromorphic vision. He has made landmark contributions by engineering hybrid organic/inorganic transistors capable of emulating pain-perceptual and sensitization-regulated nociceptors — critical building blocks for next-generation prosthetics and intelligent robotics — with his 2019 study garnering 186 citations and demonstrating device architectures at sub-10 nm scales. He further advanced the field by constructing mixed-dimensional heterojunction transistors combining 0D perovskite quantum dots with 2D MoS₂, achieving photoelectric visual adaptation that mirrors biological light-sensing mechanisms, a work that has attracted 158 citations. More recently, He has explored polarization-sensitive neuromorphic vision using anisotropic ReS₂ neuro-transistors, enabling reconfigurable perception capabilities with 83 citations. Collectively, his research establishes a compelling framework for brain-inspired computing and artificial sensory systems, making him an influential voice in the rapidly evolving landscape of neuromorphic and optoelectronic device research.
Research Focus
Key Achievements
Top Papers
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