Papers
3
Total Citations
74
H-Index
3
About
Wenjian Li is a pioneering researcher at the intersection of stretchable electronics and advanced mechanical systems, with key contributions in organic tribotronic transistors and magnetic drive mechanisms. Li’s most impactful work introduces the first intrinsically stretchable organic-tribotronic-transistor (SOTT) for tactile sensing, achieving 48 citations by enabling next-generation smart interactive systems without a top gate electrode—a breakthrough that marries flexibility with electronic functionality. In mechanical engineering, Li designed a novel magnetic nutation drive for industrial robotic wrist reducers (18 citations), offering a contactless, high-precision alternative to traditional gears. More recently, Li explored chiral separation in rotating robots through obstacle arrays (8 citations), demonstrating a novel approach to particle sorting inspired by symmetry-breaking physics. With over 70 cumulative citations, Li’s work bridges soft electronics and robotics, earning recognition for advancing both wearable sensing and robotic actuation. This dual expertise makes Li a standout figure in the development of intelligent, adaptive systems for human-machine interaction.
Research Focus
Key Achievements
Top Papers
- 1Intrinsically Stretchable Organic-Tribotronic-Transistor for Tactile Sensing48 citations · 2020
- 2
- 3Chiral separation of rotating robots through obstacle arrays8 citations · 2022