Xuanquan Liang
Papers
2
Total Citations
55
H-Index
2
About
Xuanquan Liang is pioneering the next generation of soft robotic systems through innovative materials and multifunctional design. His research centers on electrostatic adhesion (EA) clutches and integrated robotic platforms, with a focus on achieving unprecedented force density and versatility. Liang’s major contribution includes the development of a superhigh-force-density EA clutch using MXene-Poly(Vinylidene Fluoride–Trifluoroethylene–Chlorotrifluoroethylene) composites, a breakthrough that dramatically enhances the performance of compliant, lightweight, and low-power actuators for applications in robotics, wearable devices, and virtual reality. His work on a multifunctional robotic system that simultaneously enables moveable sensing and energy harvesting further demonstrates his ability to merge diverse functionalities into compact, efficient platforms. With his most-cited paper garnering 31 citations and another reaching 24, Liang’s research is already shaping the future of adaptive, energy-autonomous machines. His achievements are particularly notable for pushing the boundaries of electrostatic adhesion technology, offering a path toward more capable and practical soft robots that can operate in dynamic, real-world environments.
Research Focus
Key Achievements
Top Papers
- 1
- 2