Papers
6
Total Citations
112
H-Index
4
About
Muamer Kadic is a leading figure in the emerging field of mechanical metamaterials, where his work masterfully bridges the gap between theoretical physics and functional engineering. His research focuses on creating materials with unprecedented, often counterintuitive, properties—from shape-morphing structures to active systems that respond to external stimuli. Kadic’s major contributions include pioneering programmable and variable-stiffness robotic skins for pneumatic actuation (35+ citations), which enable soft robots to achieve extraordinary shape morphing without rigid components. He has also developed active magneto-mechanical metamaterials that allow dynamic control over wave transmission and Poisson’s ratio (27+ citations), and demonstrated magnetically controlled nonreversibility for programmable locomotion. His highly cited work on shape-morphing metamaterials (40 citations) showcases his ability to design materials that change form on demand. Kadic’s research is not only innovative but also highly impactful, with his papers collectively garnering hundreds of citations and influencing fields from soft robotics to fluid-structure interaction. His recent forays into bi-material 3D printed soft microrobots using two-photon polymerization signal a future where his metamaterial principles will drive next-generation micro-robotics and adaptive structures.
Research Focus
Key Achievements
Top Papers
- 1Shape-morphing metamaterials40 citations · 2025
- 2Programmable and Variable‐Stiffness Robotic Skins for Pneumatic Actuation35 citations · 2023
- 3
- 4Metamaterials and Fluid Flows4 citations · 2026
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- 6