Chengjun Zeng
Papers
1
Total Citations
9
H-Index
1
About
Chengjun Zeng is a researcher at the forefront of smart materials, specializing in the mechanics and physics of shape memory hydrogels. His work bridges theoretical modeling and experimental validation, with a particular focus on understanding how these responsive materials behave under coupled thermal and aqueous stimuli. In his most-cited paper, "Thermo-aqueous coupling behaviors for shape memory hydrogels: A statistical–mechanical model and simulations faced with experiments" (2023), Zeng developed a pioneering statistical-mechanical framework that accurately predicts the complex, multi-stimuli-driven shape recovery and deformation of hydrogels. This contribution is critical for advancing applications in soft robotics, biomedical devices, and adaptive structures, where precise control over material response is essential. With 9 citations to date, his work is gaining traction among peers in the mechanics and materials communities. Zeng’s research stands out for its rigorous integration of theory and simulation with experimental data, offering a robust foundation for designing next-generation intelligent materials. His achievements mark him as an emerging voice in the field of stimuli-responsive polymers.
Research Focus
Key Achievements
Top Papers
- 1