Papers
26
Total Citations
2,102
H-Index
14
About
Shaowu Pan is a multidisciplinary researcher whose work spans flexible electronics, neuromorphic sensing, and robotic systems, with particular distinction in the emerging field of electronic skin (e-skin) and bioinspired perception. His most impactful contributions lie at the intersection of materials science and artificial intelligence, where he has pioneered systems that replicate human sensory capabilities through stretchable and flexible electronics. His landmark 2020 paper on gesture recognition using a bioinspired architecture that fuses visual and somatosensory data from stretchable sensors has garnered over 535 citations, while his work on artificial skin perception and artificial sensory neurons with tactile perceptual learning have collectively accumulated nearly 900 citations, establishing him as a leading voice in the field. Pan has also made notable advances in stretchable strain sensors and pangolin-inspired microwave-invisible metastructures, reflecting a creative, nature-inspired design philosophy. Earlier in his career, he contributed substantially to amphibious spherical robotics, developing real-time visual tracking and structural analysis systems. With total citations exceeding 2,000 across diverse domains, Pan's research consistently bridges cutting-edge materials innovation with practical robotic and bioelectronic applications.
Research Focus
Key Achievements
Top Papers
- 1
- 2Artificial Skin Perception444 citations · 2020
- 3An Artificial Sensory Neuron with Tactile Perceptual Learning412 citations · 2018
- 4Mechanocombinatorially Screening Sensitivity of Stretchable Strain Sensors127 citations · 2019
- 5
- 6Pangolin‐Inspired Stretchable, Microwave‐Invisible Metascale85 citations · 2021
- 7
- 8
- 9Visual Detection and Tracking System for a Spherical Amphibious Robot45 citations · 2017
- 10