Yingze Li
Papers
1
Total Citations
7
H-Index
1
About
Yingze Li is pioneering the development of bioinspired adhesive structures, with a focused expertise in gecko-inspired adhesives and their application to robotic manipulation and locomotion. Their major contribution lies in overcoming the persistent challenge of achieving robust adhesion on curved and undevelopable surfaces—a critical bottleneck in soft robotics. Li’s landmark 2024 paper, “In Situ Growth of Mushroom‐Shaped Adhesive Structures on Flat/Curved Surfaces via Electrical Modulation,” introduces an innovative fabrication method that uses electrical modulation to grow adhesive structures directly onto complex geometries. This work, already garnering 7 citations, represents a significant leap forward, as it bypasses the traditional limitations of pre-fabricated adhesives that fail on non-flat surfaces. By enabling the in situ creation of mushroom-shaped adhesive pillars, Li’s research directly enhances the performance of robotic grippers and climbing robots, opening new avenues for autonomous systems operating in unstructured environments. Their work is notable for merging materials science with practical robotics, offering a scalable and versatile solution that could redefine how robots interact with the physical world.
Research Focus
Key Achievements
Top Papers
- 1