Papers
15
Total Citations
751
H-Index
11
About
Chengpeng Jiang is a pioneering researcher at the intersection of neuromorphic engineering, flexible electronics, and bioinspired sensory systems. His work centers on developing artificial sensory nerves and skin-like interfaces that mimic biological perception, with a focus on tactile and multimodal integration. Jiang’s major contributions include creating a mammalian-brain-inspired neuromorphic motion-cognition nerve that achieves cross-modal perceptual enhancement (138 citations), and a multifunctional skin-like wearable optical sensor based on optical micro-/nanofibers (126 citations). He has also advanced robotic tactile sensing with finger-skin-inspired flexible optical sensors for force and slip detection (101 citations), and high-resolution capacitive tactile sensors using CNT/PDMS composites (79 citations). His development of a flexible artificial sensory nerve using nanoparticle-assembled synaptic devices (77 citations) demonstrates his impact on neuromorphic tactile recognition. With over 700 total citations across his top ten papers, Jiang’s work has been published in leading journals and has significant implications for next-generation robotics, prosthetics, and human-machine interaction. His innovative designs, such as fully elastomeric fingerprint-shaped electronic skin and dual-mode pressure sensors, highlight his ability to translate biological principles into practical, high-performance devices.
Research Focus
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Top Papers
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