Papers
8
Total Citations
620
H-Index
5
About
Lei Meng is a multidisciplinary researcher whose work spans advanced materials science, flexible electronics, and robotic manufacturing systems. Best known for pioneering contributions to conductive hydrogel technology, Meng has developed innovative fabrication strategies that address longstanding challenges in wearable electronics and intelligent biomimetic sensing. His 2020 study on tannic acid–silver dual catalysis-induced polymerization (255 citations) introduced a rapid, ambient-temperature route to highly stretchable, self-adhesive strain sensors, while his 2022 work on lignin-encapsulated silica nanoparticle-reinforced hydrogels (195 citations) significantly advanced mechanical performance and adhesion in flexible devices. His 2021 research on zwitterionic hydrogels (139 citations) further extended the operational range of electronic skin to low-temperature environments. Collectively, these three papers alone have garnered nearly 600 citations, establishing Meng as a notable voice in soft robotics and human-machine interface materials. Beyond materials science, Meng has also contributed to robotic vision systems, point cloud registration algorithms, and inverse kinematics optimization, reflecting a broader interest in intelligent manufacturing. His diverse portfolio positions him as a versatile researcher bridging functional materials and applied robotics engineering.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3
- 4
- 5
- 6
- 7
- 8