Jianmin Zeng
Papers
1
Total Citations
55
H-Index
1
About
Jianmin Zeng is a pioneering researcher at the forefront of bio-inspired optoelectronics and neuromorphic engineering. Their most notable contribution lies in the development of perovskite retinomorphic image sensors, which replicate the neural architecture of the human retina to enable embodied intelligent vision. This breakthrough, detailed in their highly cited 2025 work (55 citations), addresses a critical challenge in assistive robotics: creating ultrasensitive, reconfigurable, and large-scale visual systems that can see, recognize, and respond to real-time environmental cues. By integrating perovskite materials with retinomorphic design, Zeng has unlocked new possibilities for exoskeleton robots to better assist physically disabled individuals, allowing these machines to adapt dynamically to complex surroundings. Their research bridges materials science, neuroscience, and robotics, demonstrating how next-generation sensors can mimic biological vision for practical, life-enhancing applications. With a growing citation impact and a focus on translating fundamental discoveries into tangible assistive technologies, Jianmin Zeng is shaping the future of intelligent, human-centered robotics.
Research Focus
Key Achievements
Top Papers
- 1Perovskite retinomorphic image sensor for embodied intelligent vision55 citations · 2025