Jiajie Liang
Papers
3
Total Citations
176
H-Index
3
About
Jiajie Liang is a leading researcher in the field of bioinspired nanomaterials and flexible electronics, with a focus on developing advanced electromechanical systems. His work bridges materials science and device engineering, particularly through the design of high-performance actuators and sensors. Liang’s most cited paper, “Electromechanical Actuator with Controllable Motion, Fast Response Rate, and High-Frequency Resonance Based on Graphene and Polydiacetylene” (2012, 154 citations), introduced a novel actuator combining graphene’s conductivity with polydiacetylene’s responsiveness, achieving unprecedented control and speed for applications in robotics and sonar. More recently, his nacre-inspired MXene-based film (2024, 18 citations) demonstrated exceptional piezoresistive sensitivity across a broad range, advancing wearable sensing technology. Liang’s 2025 work on artificial flexible closed-loop tactile systems marks a significant step toward mimicking human touch in prosthetics and intelligent robots. With a growing citation impact, his contributions are shaping next-generation soft robotics, human-machine interfaces, and biomedical devices, making him a key figure in the evolution of smart, responsive materials.
Research Focus
Key Achievements
Top Papers
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- 3Artificial Flexible Closed‐Loop Tactile Systems4 citations · 2025