Papers

4

Total Citations

2,711

H-Index

3

About

Sihong Wang is a pioneer at the intersection of stretchable electronics and neuromorphic computing, fundamentally redefining how soft, wearable systems can sense and process data directly on the human body. His landmark 2018 work, *Skin electronics from scalable fabrication of an intrinsically stretchable transistor array* (over 2,160 citations), established a scalable manufacturing pathway for high-performance stretchable transistors, a critical enabler for truly conformable electronic skins. Wang has since tackled the persistent challenge of motion artifacts in wearable sensing, inventing a strain-unperturbed pressure sensor (2021, 354 citations) that decouples pressure detection from mechanical deformation—a breakthrough for reliable tactile monitoring on prosthetics and soft robots. His research also extends to self-powered motion tracking via triboelectric sensors (2014, 193 citations) and, most recently, to large-scale stretchable neuromorphic circuits (2024) that perform on-body edge processing of sensory data. By merging intrinsic stretchability with brain-inspired computation, Wang is laying the foundation for next-generation wearable systems that are not only imperceptible to the user but also intelligent and autonomous.

Research Focus

Key Achievements

3
H-Index
4
Papers
2,711
Total Citations
678
Avg Citations/Paper
🏆 Most Cited Paper
Skin electronics from scalable fabrication of an intrinsically stretchable transistor array
2,162 citations · 2018
📈 Most Prolific Year: 2018 (1 Papers)
🤝 Key Collaborators: 59
🏛 Institutions: Stanford University, University of Chicago, Georgia Institute of Technology, Argonne National Laboratory

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 12 days ago