Guangsu Huang
Papers
3
Total Citations
158
H-Index
3
About
Guangsu Huang is a leading figure in the development of advanced polymeric materials, with a primary focus on creating mechanically robust, intelligent, and defect-tolerant elastomers and hydrogels. His major contributions lie in overcoming the long-standing trade-off between strength, toughness, and defect tolerance in synthetic materials. Inspired by biological structures, Huang pioneered a latex-assembly method to fabricate ultra-tough elastomers that integrate soft and hard components, achieving remarkable self-healing and intelligent-responsive abilities—a work that has garnered 96 citations. He further advanced the field by engineering wide-range linear viscoelastic hydrogels with high mechanical properties, enabling their use as quantifiable stress-strain sensors (52 citations). Additionally, his development of an organic-inorganic hybridized crosslinker has produced mechanically robust smart hydrogels, expanding their application potential. With a citation count exceeding 150 for his top works, Huang’s research is pivotal for next-generation materials in soft robotics, wearable sensors, and biomedical devices. His innovative, bio-inspired approach continues to inspire researchers seeking to create materials that are both strong and adaptable.
Research Focus
Key Achievements
Top Papers
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