Papers
14
Total Citations
900
H-Index
9
About
Wentao Xu is a pioneering researcher at the forefront of neuromorphic electronics, bioinspired sensorimotor systems, and flexible organic devices. His work bridges neuroscience and materials engineering to create sophisticated artificial neural architectures that emulate biological perception and motor control. Xu's landmark 2018 paper, "Stretchable Organic Optoelectronic Sensorimotor Synapse," has accumulated over 516 citations and established him as a leading voice in electronic prosthetics and neurologically inspired robotics, demonstrating how artificial synapses can functionally replicate human sensory and motor pathways. Building on this foundation, he has pioneered flexible artificial sensory nerves, artificial reflex arcs, and multisensory neuromorphic systems, including a mammalian-brain-inspired motion-cognition nerve that achieved 138 citations for its innovative cross-modal perceptual enhancement capabilities. His more recent contributions explore bionic olfactory transistors, n-type organic synaptic devices for adaptive robotics, and shape-morphing neuromorphic architectures, reflecting a career-long commitment to pushing the boundaries of human-machine interaction. Collectively, Xu's body of work—spanning wearable tactile sensors to space-environment-capable neuromorphic communication loops—underscores his transformative impact on intelligent robotics, prosthetics, and next-generation computing paradigms.
Research Focus
Key Achievements
Top Papers
- 1Stretchable organic optoelectronic sensorimotor synapse516 citations · 2018
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