Papers
8
Total Citations
377
H-Index
8
About
Liulian Huang is a leading researcher in the development of advanced, multifunctional hydrogels and cellulose-based soft materials for wearable sensors, soft robotics, and smart devices. Her work is distinguished by creating tough, conductive, and biocompatible hydrogels that integrate multiple sensory capabilities—including self-healing, adhesion, antibacterial, UV-shielding, and antioxidant properties—often inspired by natural mussel chemistry. Her highly cited 2021 paper on super-stretchable conductive double network hydrogels (132 citations) introduced a material capable of moisture-electric generation and multiple sensations, setting a benchmark in the field. Huang has also pioneered cellulose-based actuators that respond to humidity, sunlight, and electrothermal stimuli, enabling configurable movements for programmable soft robots. Her research on lignin-reinforced hydrogels with asymmetric adhesion and disulfide crosslinking (32 citations) further advances strain-sensing applications. With over 375 total citations across her most influential works, Huang’s contributions are pivotal for next-generation wearable electronics and biomedical devices, demonstrating how bio-inspired design can yield materials with unprecedented functionality and environmental responsiveness.
Research Focus
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Top Papers
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- 7Cellulose-based multi-responsive soft robots for programmable smart devices19 citations · 2024
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