Jianli Cheng
Papers
2
Total Citations
104
H-Index
2
About
Jianli Cheng is a leading researcher in flexible electronics and wearable sensing technologies, with a primary focus on developing advanced materials for human–machine interaction and healthcare monitoring. Their major contributions center on engineering high-performance pressure and strain sensors using MXene-based composites. Notably, Cheng pioneered the use of nanocellulose intercalation to enhance MXene pressure sensors, achieving remarkable sensitivity and stability for real-time human interactive monitoring—a work that has garnered 58 citations. They further advanced the field by creating an ultrastretchable, multihealable, and highly sensitive strain sensor based on a double cross-linked MXene hydrogel (46 citations), capable of adapting to complex human motions and enabling remote control of artificial intelligence robotics. This innovation addresses the critical challenge of balancing stretchability, self-healing, and sensitivity in wearable electronics. With their work cited in cutting-edge applications from intelligent robotics to patient healthcare, Cheng’s research is shaping the next generation of flexible, durable, and interactive sensing platforms. Their achievements highlight a unique ability to translate materials science breakthroughs into practical, human-centric technologies.
Research Focus
Key Achievements
Top Papers
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- 2