Papers
10
Total Citations
1,632
H-Index
7
About
Jiangxin Wang is a pioneering researcher in the fields of stretchable electronics, soft robotics, and flexible sensing systems, whose work has profoundly shaped the development of next-generation wearable and interactive technologies. His most celebrated contribution — a self-healing, conductive hydrogel-based strain sensor capable of sustaining an extraordinary 1000% elastic strain — garnered over 917 citations and established a landmark in the field of human-motion detection. Wang's research consistently addresses a central engineering challenge: reconciling electrical conductivity with mechanical stretchability, exemplified by his highly cited work on liquid-metal-particle-enabled superelastic conductors (269 citations). His influential 2020 review on artificial muscles for soft robotics (286 citations) demonstrates his broad command of actuation mechanisms, from dielectric elastomers to pneumatic systems, positioning him as a thought leader in intelligent soft robotic design. Beyond sensing and actuation, Wang has made notable contributions to stretchable electroluminescent displays, biomimetic multistimulus sensors, and thermally drawn fiber sensors. With a cumulative citation record exceeding 1,600, his work bridges materials science, bioelectronics, and robotics, offering transformative tools for health monitoring, human-machine interfaces, and adaptive wearable systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Recent Progress in Artificial Muscles for Interactive Soft Robotics286 citations · 2020
- 3
- 4Anisotropic conductive networks for multidimensional sensing76 citations · 2021
- 5Progress and Prospects in Stretchable Electroluminescent Devices43 citations · 2016
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- 9Stretchable Dielectric Fluid Pumps for Soft Fluid Power Systems1 citations · 2025
- 10