Ahmad Rafsanjani
Harvard University, ETH Zurich, University of Southern Denmark, Maersk (Denmark)
Papers
24
Total Citations
759
H-Index
9
About
Ahmad Rafsanjani is a pioneering researcher at the intersection of mechanical metamaterials, soft robotics, and bioinspired design. His work explores how carefully engineered structures — drawing on principles from kirigami, origami, and multistable architectures — can unlock extraordinary mechanical behaviors in otherwise conventional materials. Among his most influential contributions is his development of guided transition waves in multistable mechanical metamaterials (266 citations), which extended bistable wave-propagation concepts beyond simple one-dimensional systems into higher-dimensional designs. Equally impactful is his framework for programming soft robots using flexible mechanical metamaterials (240 citations), demonstrating how complex deformation responses can dramatically enhance robotic performance. Rafsanjani has made a particular mark in locomotion robotics, drawing inspiration from snakes, earthworms, and other limbless organisms to develop crawling robots with kirigami skins, textile origami bodies, and anisotropic friction surfaces. His research also ventures into sensory aesthetics, including strain-induced structural coloration in soft composites. Spanning materials science, robotics, and biomechanics, his body of work reflects a rare interdisciplinary vision. With hundreds of citations accumulated across a relatively compact publication record, Rafsanjani has established himself as a highly influential voice shaping the future of intelligent, adaptive soft machines.
Research Focus
Key Achievements
Top Papers
- 1Guided transition waves in multistable mechanical metamaterials266 citations · 2020
- 2Programming soft robots with flexible mechanical metamaterials240 citations · 2019
- 3Kirigami Makes a Soft Magnetic Sheet Crawl37 citations · 2023
- 4Stretchable Soft Composites with Strain‐Induced Architectured Color32 citations · 2021
- 5A textile origami snake robot for rectilinear locomotion29 citations · 2024
- 6Curvilinear Kirigami Skins Let Soft Bending Actuators Slither Faster24 citations · 2022
- 7Earthworm‐Inspired Soft Skin Crawling Robot22 citations · 2024
- 8
- 9Earthworm-inspired multimodal soft actuators10 citations · 2023
- 10Programmable inflatable origami9 citations · 2023