Qi Liang
Papers
3
Total Citations
57
H-Index
3
About
Qi Liang is a leading researcher in flexible electronics and sensor technology, with a core focus on developing high-performance tactile and proximity sensors for robotics and biomedical applications. Her major contributions center on overcoming critical limitations in electronic skin—namely, sensitivity, response time, and directional sensing. Liang’s most influential work, a 2019 study on “High Sensitivity Flexible Electronic Skin Based on Graphene Film” (24 citations), introduced a novel approach to achieving rapid response and long-term stability, addressing key challenges in the field. She further advanced this area with an “Ultra-Sensitive Flexible Tactile Sensor Based on Graphene Film” (10 citations), pushing the boundaries of sensitivity to expand practical applications. In parallel, her 2017 paper on “A Novel Proximity Sensor Based on Parallel Plate Capacitance” (23 citations) solved a persistent problem in robotics: enabling simultaneous distance measurement and direction identification of approaching objects. With over 57 citations across her most-cited works, Liang’s research has significantly influenced the design of more intelligent, responsive artificial skin and sensing systems. Her work is particularly notable for its direct impact on industrial robotics and biomedical engineering, where enhanced sensor performance is critical for safe human-machine interaction and advanced prosthetics.
Research Focus
Key Achievements
Top Papers
- 1High Sensitivity Flexible Electronic Skin Based on Graphene Film24 citations · 2019
- 2A Novel Proximity Sensor Based on Parallel Plate Capacitance23 citations · 2017
- 3Ultra-Sensitive Flexible Tactile Sensor Based on Graphene Film10 citations · 2019