Xiaojia Guo
Papers
1
Total Citations
12
H-Index
1
About
Xiaojia Guo is a researcher at the forefront of biofabrication and smart materials, specializing in the development of stimuli-responsive hydrogels for biomedical applications. Their most cited work, "One-step programmable electrofabrication of chitosan asymmetric hydrogels with 3D shape deformation" (2021, 12 citations), introduces a groundbreaking method for creating hydrogels that can undergo complex, programmable shape changes in response to external stimuli. This innovation leverages electrofabrication to pattern chitosan—a biocompatible polymer—into asymmetric structures, enabling dynamic 3D deformations that mimic natural tissue movements. Guo’s contributions advance the field of soft robotics and tissue engineering by offering a simple, scalable route to fabricate adaptive materials with precise control over geometry and actuation. With a growing citation impact, their research holds promise for developing smart implants, drug delivery systems, and bio-inspired actuators. Guo’s work stands out for its elegant integration of electrochemistry and polymer science, addressing key challenges in creating life-like, responsive materials. As a rising voice in biomaterials, they continue to push boundaries in programmable matter, inspiring new directions for next-generation biomedical devices.
Research Focus
Key Achievements
Top Papers
- 1