Papers
5
Total Citations
338
H-Index
5
About
Hui-Jing Li is a leading innovator at the intersection of soft robotics, bionic skin, and intelligent materials, with a particular focus on developing conductive polymer gels for extreme environments. Her work addresses critical challenges in human-machine interaction and autonomous soft systems. Li’s most impactful contribution is the creation of an anti-freezing organohydrogel triboelectric nanogenerator, which enables highly efficient and flexible human-machine interaction at temperatures as low as −30 °C, a breakthrough cited 138 times. She has also pioneered asymmetric bilayer CNTs-elastomer/hydrogel composites for soft actuators with integrated sensing, garnering 106 citations. Her comprehensive review on bionic skin based on conductive polymer gels (46 citations) has become a foundational resource for researchers in healthcare and soft robotics. Notably, Li developed a salt-adaptively conductive ionogel sensor for marine sensing (41 citations), overcoming the challenge of signal degradation in seawater. Her most recent work, inspired by cell differentiation, introduces salt-induced multifunctional gels for an intelligent soft robot with an artificial reflex arc, demonstrating autonomous, repeatable actuation. With over 338 citations across her top papers, Hui-Jing Li is shaping the future of adaptive, environment-resilient soft electronics.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3Recent Progress in Bionic Skin Based on Conductive Polymer Gels46 citations · 2021
- 4Salt‐Adaptively Conductive Ionogel Sensor for Marine Sensing41 citations · 2023
- 5