Jing Shen
Papers
2
Total Citations
24
H-Index
2
About
Jing Shen is a materials scientist whose innovative work bridges the gap between traditional papermaking and advanced functional hydrogels. Her research focuses on transforming cellulosic fibers—the fundamental building blocks of paper—into sustainable, high-performance soft materials with remarkable properties. Shen’s major contribution lies in developing a novel approach to convert dilute slurries of hollow tube-like papermaking fibers into phase-reversible, self-healable, and stretchable hydrogels (2019, 15 citations), demonstrating that industrial papermaking processes can be repurposed for creating next-generation biomaterials. Building on this foundation, she pioneered nanoparticle-loaded cellulosic hollow fibers with pitted walls as skeleton materials for multifunctional electromagnetic hydrogels (2024, 9 citations), opening new possibilities for applications in soft robotics, biomedical engineering, and energy harvesting. By leveraging the assembly-directed packing of microfibrous bioassemblies, Shen’s work addresses the critical challenge of scaling up hydrogel production using existing industrial infrastructure. Her research represents a paradigm shift in sustainable materials engineering, showing that the vast water requirements of papermaking can be redirected toward creating intelligent, responsive materials with commercial viability.
Research Focus
Key Achievements
Top Papers
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