Lishuang Liu
Papers
3
Total Citations
34
H-Index
3
About
Lishuang Liu is a leading researcher in the field of flexible tactile and thermal sensing, with a focus on bio-inspired electronic skin for robotic and human-machine interface applications. Her work centers on developing multifunctional sensors that mimic human tactile perception, enabling machines to recognize object surface properties such as softness, texture, thermal conductivity, and viscoelasticity. Liu’s most cited paper (19 citations) introduces a bionic piezoelectric tactile sensor based on PVDF film, which uses machine learning to classify surface features—a significant step toward intelligent prosthetics and autonomous manipulation. She also pioneered a flexible thermal sensor for robot finger skin (10 citations), addressing critical gaps in thermal sensing for artificial skin. More recently, Liu has explored radiation-hardened flexible force sensors using carbon nanotube sponges and tungsten oxide composites (5 citations), demonstrating resilience in extreme environments like space or nuclear facilities. Her interdisciplinary approach—combining materials science, sensor design, and machine learning—has produced devices with high sensitivity, flexibility, and durability. Liu’s contributions are advancing the next generation of soft robotics, wearable electronics, and humanoid sensing systems, making her a rising authority in bionic tactile technology.
Research Focus
Key Achievements
Top Papers
- 1
- 2A Flexible Thermal Sensor Based on PVDF Film for Robot Finger Skin10 citations · 2019
- 3